972 resultados para Traditional building
Resumo:
The traditional buildings in the historic center of the city of Arequipa, Perú, recently declared of human heritage, are of volcanic tuff both in walls and in vaulted roofs on the ground floor. Having been built in the 18th century and up to the beginning of the 20th century, they have suffered many damages from the seismic movements registered in this region. Due to this, many of them have had to be rebuilt. In this presentation, the different changes to adapt the city of Spanish colonial origin to the present tertiary use are analyzed.
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Hoy en día, el proceso de un proyecto sostenible persigue realizar edificios de elevadas prestaciones que son, energéticamente eficientes, saludables y económicamente viables utilizando sabiamente recursos renovables para minimizar el impacto sobre el medio ambiente reduciendo, en lo posible, la demanda de energía, lo que se ha convertido, en la última década, en una prioridad. La Directiva 2002/91/CE "Eficiencia Energética de los Edificios" (y actualizaciones posteriores) ha establecido el marco regulatorio general para el cálculo de los requerimientos energéticos mínimos. Desde esa fecha, el objetivo de cumplir con las nuevas directivas y protocolos ha conducido las políticas energéticas de los distintos países en la misma dirección, centrándose en la necesidad de aumentar la eficiencia energética en los edificios, la adopción de medidas para reducir el consumo, y el fomento de la generación de energía a través de fuentes renovables. Los edificios de energía nula o casi nula (ZEB, Zero Energy Buildings ó NZEB, Net Zero Energy Buildings) deberán convertirse en un estándar de la construcción en Europa y con el fin de equilibrar el consumo de energía, además de reducirlo al mínimo, los edificios necesariamente deberán ser autoproductores de energía. Por esta razón, la envolvente del edifico y en particular las fachadas son importantes para el logro de estos objetivos y la tecnología fotovoltaica puede tener un papel preponderante en este reto. Para promover el uso de la tecnología fotovoltaica, diferentes programas de investigación internacionales fomentan y apoyan soluciones para favorecer la integración completa de éstos sistemas como elementos arquitectónicos y constructivos, los sistemas BIPV (Building Integrated Photovoltaic), sobre todo considerando el próximo futuro hacia edificios NZEB. Se ha constatado en este estudio que todavía hay una falta de información útil disponible sobre los sistemas BIPV, a pesar de que el mercado ofrece una interesante gama de soluciones, en algunos aspectos comparables a los sistemas tradicionales de construcción. Pero por el momento, la falta estandarización y de una regulación armonizada, además de la falta de información en las hojas de datos técnicos (todavía no comparables con las mismas que están disponibles para los materiales de construcción), hacen difícil evaluar adecuadamente la conveniencia y factibilidad de utilizar los componentes BIPV como parte integrante de la envolvente del edificio. Organizaciones internacionales están trabajando para establecer las normas adecuadas y procedimientos de prueba y ensayo para comprobar la seguridad, viabilidad y fiabilidad estos sistemas. Sin embargo, hoy en día, no hay reglas específicas para la evaluación y caracterización completa de un componente fotovoltaico de integración arquitectónica de acuerdo con el Reglamento Europeo de Productos de la Construcción, CPR 305/2011. Los productos BIPV, como elementos de construcción, deben cumplir con diferentes aspectos prácticos como resistencia mecánica y la estabilidad; integridad estructural; seguridad de utilización; protección contra el clima (lluvia, nieve, viento, granizo), el fuego y el ruido, aspectos que se han convertido en requisitos esenciales, en la perspectiva de obtener productos ambientalmente sostenibles, saludables, eficientes energéticamente y económicamente asequibles. Por lo tanto, el módulo / sistema BIPV se convierte en una parte multifuncional del edificio no sólo para ser física y técnicamente "integrado", además de ser una oportunidad innovadora del diseño. Las normas IEC, de uso común en Europa para certificar módulos fotovoltaicos -IEC 61215 e IEC 61646 cualificación de diseño y homologación del tipo para módulos fotovoltaicos de uso terrestre, respectivamente para módulos fotovoltaicos de silicio cristalino y de lámina delgada- atestan únicamente la potencia del módulo fotovoltaico y dan fe de su fiabilidad por un período de tiempo definido, certificando una disminución de potencia dentro de unos límites. Existe también un estándar, en parte en desarrollo, el IEC 61853 (“Ensayos de rendimiento de módulos fotovoltaicos y evaluación energética") cuyo objetivo es la búsqueda de procedimientos y metodologías de prueba apropiados para calcular el rendimiento energético de los módulos fotovoltaicos en diferentes condiciones climáticas. Sin embargo, no existen ensayos normalizados en las condiciones específicas de la instalación (p. ej. sistemas BIPV de fachada). Eso significa que es imposible conocer las efectivas prestaciones de estos sistemas y las condiciones ambientales que se generan en el interior del edificio. La potencia nominal de pico Wp, de un módulo fotovoltaico identifica la máxima potencia eléctrica que éste puede generar bajo condiciones estándares de medida (STC: irradición 1000 W/m2, 25 °C de temperatura del módulo y distribución espectral, AM 1,5) caracterizando eléctricamente el módulo PV en condiciones específicas con el fin de poder comparar los diferentes módulos y tecnologías. El vatio pico (Wp por su abreviatura en inglés) es la medida de la potencia nominal del módulo PV y no es suficiente para evaluar el comportamiento y producción del panel en términos de vatios hora en las diferentes condiciones de operación, y tampoco permite predecir con convicción la eficiencia y el comportamiento energético de un determinado módulo en condiciones ambientales y de instalación reales. Un adecuado elemento de integración arquitectónica de fachada, por ejemplo, debería tener en cuenta propiedades térmicas y de aislamiento, factores como la transparencia para permitir ganancias solares o un buen control solar si es necesario, aspectos vinculados y dependientes en gran medida de las condiciones climáticas y del nivel de confort requerido en el edificio, lo que implica una necesidad de adaptación a cada contexto específico para obtener el mejor resultado. Sin embargo, la influencia en condiciones reales de operación de las diferentes soluciones fotovoltaicas de integración, en el consumo de energía del edificio no es fácil de evaluar. Los aspectos térmicos del interior del ambiente o de iluminación, al utilizar módulos BIPV semitransparentes por ejemplo, son aún desconocidos. Como se dijo antes, la utilización de componentes de integración arquitectónica fotovoltaicos y el uso de energía renovable ya es un hecho para producir energía limpia, pero también sería importante conocer su posible contribución para mejorar el confort y la salud de los ocupantes del edificio. Aspectos como el confort, la protección o transmisión de luz natural, el aislamiento térmico, el consumo energético o la generación de energía son aspectos que suelen considerarse independientemente, mientras que todos juntos contribuyen, sin embargo, al balance energético global del edificio. Además, la necesidad de dar prioridad a una orientación determinada del edificio, para alcanzar el mayor beneficio de la producción de energía eléctrica o térmica, en el caso de sistemas activos y pasivos, respectivamente, podría hacer estos últimos incompatibles, pero no necesariamente. Se necesita un enfoque holístico que permita arquitectos e ingenieros implementar sistemas tecnológicos que trabajen en sinergia. Se ha planteado por ello un nuevo concepto: "C-BIPV, elemento fotovoltaico consciente integrado", esto significa necesariamente conocer los efectos positivos o negativos (en términos de confort y de energía) en condiciones reales de funcionamiento e instalación. Propósito de la tesis, método y resultados Los sistemas fotovoltaicos integrados en fachada son a menudo soluciones de vidrio fácilmente integrables, ya que por lo general están hechos a medida. Estos componentes BIPV semitransparentes, integrados en el cerramiento proporcionan iluminación natural y también sombra, lo que evita el sobrecalentamiento en los momentos de excesivo calor, aunque como componente estático, asimismo evitan las posibles contribuciones pasivas de ganancias solares en los meses fríos. Además, la temperatura del módulo varía considerablemente en ciertas circunstancias influenciada por la tecnología fotovoltaica instalada, la radiación solar, el sistema de montaje, la tipología de instalación, falta de ventilación, etc. Este factor, puede suponer un aumento adicional de la carga térmica en el edificio, altamente variable y difícil de cuantificar. Se necesitan, en relación con esto, más conocimientos sobre el confort ambiental interior en los edificios que utilizan tecnologías fotovoltaicas integradas, para abrir de ese modo, una nueva perspectiva de la investigación. Con este fin, se ha diseñado, proyectado y construido una instalación de pruebas al aire libre, el BIPV Env-lab "BIPV Test Laboratory", para la caracterización integral de los diferentes módulos semitransparentes BIPV. Se han definido también el método y el protocolo de ensayos de caracterización en el contexto de un edificio y en condiciones climáticas y de funcionamiento reales. Esto ha sido posible una vez evaluado el estado de la técnica y la investigación, los aspectos que influyen en la integración arquitectónica y los diferentes tipos de integración, después de haber examinado los métodos de ensayo para los componentes de construcción y fotovoltaicos, en condiciones de operación utilizadas hasta ahora. El laboratorio de pruebas experimentales, que consiste en dos habitaciones idénticas a escala real, 1:1, ha sido equipado con sensores y todos los sistemas de monitorización gracias a los cuales es posible obtener datos fiables para evaluar las prestaciones térmicas, de iluminación y el rendimiento eléctrico de los módulos fotovoltaicos. Este laboratorio permite el estudio de tres diferentes aspectos que influencian el confort y consumo de energía del edificio: el confort térmico, lumínico, y el rendimiento energético global (demanda/producción de energía) de los módulos BIPV. Conociendo el balance de energía para cada tecnología solar fotovoltaica experimentada, es posible determinar cuál funciona mejor en cada caso específico. Se ha propuesto una metodología teórica para la evaluación de estos parámetros, definidos en esta tesis como índices o indicadores que consideran cuestiones relacionados con el bienestar, la energía y el rendimiento energético global de los componentes BIPV. Esta metodología considera y tiene en cuenta las normas reglamentarias y estándares existentes para cada aspecto, relacionándolos entre sí. Diferentes módulos BIPV de doble vidrio aislante, semitransparentes, representativos de diferentes tecnologías fotovoltaicas (tecnología de silicio monocristalino, m-Si; de capa fina en silicio amorfo unión simple, a-Si y de capa fina en diseleniuro de cobre e indio, CIS) fueron seleccionados para llevar a cabo una serie de pruebas experimentales al objeto de demostrar la validez del método de caracterización propuesto. Como resultado final, se ha desarrollado y generado el Diagrama Caracterización Integral DCI, un sistema gráfico y visual para representar los resultados y gestionar la información, una herramienta operativa útil para la toma de decisiones con respecto a las instalaciones fotovoltaicas. Este diagrama muestra todos los conceptos y parámetros estudiados en relación con los demás y ofrece visualmente toda la información cualitativa y cuantitativa sobre la eficiencia energética de los componentes BIPV, por caracterizarlos de manera integral. ABSTRACT A sustainable design process today is intended to produce high-performance buildings that are energy-efficient, healthy and economically feasible, by wisely using renewable resources to minimize the impact on the environment and to reduce, as much as possible, the energy demand. In the last decade, the reduction of energy needs in buildings has become a top priority. The Directive 2002/91/EC “Energy Performance of Buildings” (and its subsequent updates) established a general regulatory framework’s methodology for calculation of minimum energy requirements. Since then, the aim of fulfilling new directives and protocols has led the energy policies in several countries in a similar direction that is, focusing on the need of increasing energy efficiency in buildings, taking measures to reduce energy consumption, and fostering the use of renewable sources. Zero Energy Buildings or Net Zero Energy Buildings will become a standard in the European building industry and in order to balance energy consumption, buildings, in addition to reduce the end-use consumption should necessarily become selfenergy producers. For this reason, the façade system plays an important role for achieving these energy and environmental goals and Photovoltaic can play a leading role in this challenge. To promote the use of photovoltaic technology in buildings, international research programs encourage and support solutions, which favors the complete integration of photovoltaic devices as an architectural element, the so-called BIPV (Building Integrated Photovoltaic), furthermore facing to next future towards net-zero energy buildings. Therefore, the BIPV module/system becomes a multifunctional building layer, not only physically and functionally “integrated” in the building, but also used as an innovative chance for the building envelope design. It has been found in this study that there is still a lack of useful information about BIPV for architects and designers even though the market is providing more and more interesting solutions, sometimes comparable to the existing traditional building systems. However at the moment, the lack of an harmonized regulation and standardization besides to the non-accuracy in the technical BIPV datasheets (not yet comparable with the same ones available for building materials), makes difficult for a designer to properly evaluate the fesibility of this BIPV components when used as a technological system of the building skin. International organizations are working to establish the most suitable standards and test procedures to check the safety, feasibility and reliability of BIPV systems. Anyway, nowadays, there are no specific rules for a complete characterization and evaluation of a BIPV component according to the European Construction Product Regulation, CPR 305/2011. BIPV products, as building components, must comply with different practical aspects such as mechanical resistance and stability; structural integrity; safety in use; protection against weather (rain, snow, wind, hail); fire and noise: aspects that have become essential requirements in the perspective of more and more environmentally sustainable, healthy, energy efficient and economically affordable products. IEC standards, commonly used in Europe to certify PV modules (IEC 61215 and IEC 61646 respectively crystalline and thin-film ‘Terrestrial PV Modules-Design Qualification and Type Approval’), attest the feasibility and reliability of PV modules for a defined period of time with a limited power decrease. There is also a standard (IEC 61853, ‘Performance Testing and Energy Rating of Terrestrial PV Modules’) still under preparation, whose aim is finding appropriate test procedures and methodologies to calculate the energy yield of PV modules under different climate conditions. Furthermore, the lack of tests in specific conditions of installation (e.g. façade BIPV devices) means that it is difficult knowing the exact effective performance of these systems and the environmental conditions in which the building will operate. The nominal PV power at Standard Test Conditions, STC (1.000 W/m2, 25 °C temperature and AM 1.5) is usually measured in indoor laboratories, and it characterizes the PV module at specific conditions in order to be able to compare different modules and technologies on a first step. The “Watt-peak” is not enough to evaluate the panel performance in terms of Watt-hours of various modules under different operating conditions, and it gives no assurance of being able to predict the energy performance of a certain module at given environmental conditions. A proper BIPV element for façade should take into account thermal and insulation properties, factors as transparency to allow solar gains if possible or a good solar control if necessary, aspects that are linked and high dependent on climate conditions and on the level of comfort to be reached. However, the influence of different façade integrated photovoltaic solutions on the building energy consumption is not easy to assess under real operating conditions. Thermal aspects, indoor temperatures or luminance level that can be expected using building integrated PV (BIPV) modules are not well known. As said before, integrated photovoltaic BIPV components and the use of renewable energy is already a standard for green energy production, but would also be important to know the possible contribution to improve the comfort and health of building occupants. Comfort, light transmission or protection, thermal insulation or thermal/electricity power production are aspects that are usually considered alone, while all together contribute to the building global energy balance. Besides, the need to prioritize a particular building envelope orientation to harvest the most benefit from the electrical or thermal energy production, in the case of active and passive systems respectively might be not compatible, but also not necessary. A holistic approach is needed to enable architects and engineers implementing technological systems working in synergy. A new concept have been suggested: “C-BIPV, conscious integrated BIPV”. BIPV systems have to be “consciously integrated” which means that it is essential to know the positive and negative effects in terms of comfort and energy under real operating conditions. Purpose of the work, method and results The façade-integrated photovoltaic systems are often glass solutions easily integrable, as they usually are custommade. These BIPV semi-transparent components integrated as a window element provides natural lighting and shade that prevents overheating at times of excessive heat, but as static component, likewise avoid the possible solar gains contributions in the cold months. In addition, the temperature of the module varies considerably in certain circumstances influenced by the PV technology installed, solar radiation, mounting system, lack of ventilation, etc. This factor may result in additional heat input in the building highly variable and difficult to quantify. In addition, further insights into the indoor environmental comfort in buildings using integrated photovoltaic technologies are needed to open up thereby, a new research perspective. This research aims to study their behaviour through a series of experiments in order to define the real influence on comfort aspects and on global energy building consumption, as well as, electrical and thermal characteristics of these devices. The final objective was to analyze a whole set of issues that influence the global energy consumption/production in a building using BIPV modules by quantifying the global energy balance and the BIPV system real performances. Other qualitative issues to be studied were comfort aspect (thermal and lighting aspects) and the electrical behaviour of different BIPV technologies for vertical integration, aspects that influence both energy consumption and electricity production. Thus, it will be possible to obtain a comprehensive global characterization of BIPV systems. A specific design of an outdoor test facility, the BIPV Env-lab “BIPV Test Laboratory”, for the integral characterization of different BIPV semi-transparent modules was developed and built. The method and test protocol for the BIPV characterization was also defined in a real building context and weather conditions. This has been possible once assessed the state of the art and research, the aspects that influence the architectural integration and the different possibilities and types of integration for PV and after having examined the test methods for building and photovoltaic components, under operation conditions heretofore used. The test laboratory that consists in two equivalent test rooms (1:1) has a monitoring system in which reliable data of thermal, daylighting and electrical performances can be obtained for the evaluation of PV modules. The experimental set-up facility (testing room) allows studying three different aspects that affect building energy consumption and comfort issues: the thermal indoor comfort, the lighting comfort and the energy performance of BIPV modules tested under real environmental conditions. Knowing the energy balance for each experimented solar technology, it is possible to determine which one performs best. A theoretical methodology has been proposed for evaluating these parameters, as defined in this thesis as indices or indicators, which regard comfort issues, energy and the overall performance of BIPV components. This methodology considers the existing regulatory standards for each aspect, relating them to one another. A set of insulated glass BIPV modules see-through and light-through, representative of different PV technologies (mono-crystalline silicon technology, mc-Si, amorphous silicon thin film single junction, a-Si and copper indium selenide thin film technology CIS) were selected for a series of experimental tests in order to demonstrate the validity of the proposed characterization method. As result, it has been developed and generated the ICD Integral Characterization Diagram, a graphic and visual system to represent the results and manage information, a useful operational tool for decision-making regarding to photovoltaic installations. This diagram shows all concepts and parameters studied in relation to each other and visually provides access to all the results obtained during the experimental phase to make available all the qualitative and quantitative information on the energy performance of the BIPV components by characterizing them in a comprehensive way.
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Despite significant advances in building technologies with the use of conventional construction materials (as concrete and steel), which significantly have driven the construction industry, earth construction have demonstrated its importance and relevance, as well as it has matched in an efficient and eco-friendly manner the social housing concerns. The diversity of earth construction techniques allowed this material to adapt to different climatic, cultural and social contexts until the present time. However, in Angola, the construction with earth is still associated with population fringes of weak economic resources, for which, given the impossibility of being able to acquire modern construction materials (steel, cement, brick, among others), they resort to the use of available natural materials. Furthermore, the lack of scientific and technical knowledge justifies the negative appreciation of traditional building techniques, and the derogatory way how are considered the earth constructions in Angolan territory. Given the country's current development status, and taking into account the environmental requirements and the real socio-economic sustainability of Angola, it is considered that one of the viable and adequate options, could be the recovering and upgrading of the ancestral techniques of earth construction. The purpose of this research is to develop the technical and scientific knowledge in order to improve and optimize these construction solutions, responding to the real problems of housing quality as well as to the current social, economic and environmental sustainability requirements. In this paper, a description of the physical and mechanical characteristics of the adobes typically used in the construction of traditional houses in some localities of Huambo, province in Angola, is carried out. The methodology was based on mechanical in-situ testing in adobe blocks manufactured with traditional procedures: i) tensile strength evaluated with the bending test and compressive strength test on earth blocks specimens; and, ii) durability and erodibility test by Geelong method adopting the New Zealand standard (NZS) procedures (4297: 1998; 4297: 1998 and 4297: 1999). The results allow the characterization of the materials used in the construction of raw earth in the Huambo region, contributing to the development of knowledge of these sustainable and traditional housing constructive solutions with a strong presence in Angola [1, 2]. This study is part of a larger project in the area of Earth Construction [3], which aims to produce knowledge which can stimulate the use of environmental friendly construction materials and contribute to develop constructive solutions with improved performance, durability, comfort, safety and sustainability.
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Em Portugal, a temática da Construção Pré-fabricada, enquanto método construtivo, ainda não se encontra desenvolvida de forma muito aprofundada. Na sua grande maioria, os trabalhos e estudos efetuados centram-se em aspetos de projeto e dimensionamento de determinados componentes préfabricados. Elementos estruturais pré-fabricados são já frequentemente utilizados, por exemplo, em vias de comunicação, pontes, viadutos, passagens inferiores e superiores. No entanto, no âmbito dos edifícios, esta tecnologia ainda não está totalmente explorada, exceção feita a naves industriais. A definição de construção pré-fabricada ainda não é consensual e as dúvidas subsistem, tanto por parte da população em geral, como dos próprios intervenientes no setor da construção. Dadas as suas potencialidades, pretende-se estudar a construção pré-fabricada, no setor dos edifícios, enquanto metodologia construtiva e compará-la com a metodologia de construção tradicional. Numa primeira fase, o trabalho irá consistir em explorar um conjunto de conceitos, métodos, tecnologias e materiais utilizados em alguns países com maior grau de aplicação destas técnicas. Posteriormente, será feita uma comparação entre construção pré-fabricada e construção tradicional, no que diz respeito a planeamento, prazos, custos, sustentabilidade, segurança ou qualidade, com base em estudos comparativos já realizados a nível internacional. Atendendo à informação recolhida, será realizado um trabalho onde são referidos processos, que poderão ajudar a compreender melhor o que é a construção pré-fabricada enquanto método construtivo inovador – quais as suas vantagens, implicações e condicionantes – e avaliar a sua viabilidade enquanto solução construtiva.
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Earth has been a traditional building material to construct houses in Africa. One of the most common techniques is the use of sun dried or kiln fired adobe bricks with mud mortar. Fired bricks are the main cause for deforestation in countries like Malawi. Although this technique is low-cost, the bricks vary largely in shape, strength and durability. This leads to weak houses which suffer considerable damage during floods and seismic events. One solution is the use of dry-stack masonry with stabilized interlocking compressed earth blocks (ICEB). This technology has the potential of substituting the current bricks by a more sustainable kind of block. This study was made in the context of the HiLoTec project, which focuses on houses in rural areas of developing countries. For this study, Malawi was chosen for a case study. This paper presents the experimental results of tests made with dry-stack ICEBs. Soil samples from Malawi were taken and studied. Since the experimental campaign could not be carried out in Malawi, a homogenization process of Portuguese soil was made to produce ICEBs at the University of Minho, Portugal. Then, the compression and tensile strength of the materials was determined via small cylinder samples. Subsequently, the compression and flexural strength of units were determined. Finally, tests to determine the compressive strength of both prisms and masonry wallets and to determine the initial shear strength of the dry interfaces were carried out. This work provides valuable data for low-cost eco-efficient housing
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Dissertação de mestrado em Património e Turismo Cultural
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Kaukojäähdytyksellä tarkoitetaan keskitetysti tuotetun jäähdytysenergian jakamista kiinteistöihin jakeluverkossa kiertävän kylmän veden välityksellä, eli kaukojäähdytys on ulkoistettu jäähdytysratkaisu. Jäähdytysenergiaa tarvitaan työtehon, viihtyisyyden ja sisäilman laadun parantamiseksi, sekä joidenkin prosessien tarpeisiin. Siinä missä perinteinen kiinteistökohtainen jäähdytysjärjestelmä tuottaa jäähdytysenergian sähköllä, käytetään kaukojäähdytyksessä jäähdytysenergian tuottamiseen sellaisia resursseja, jotka muuten jäisivät käyttämättä. Tästä syystä kaukojäähdytys vähentää merkittävästi hiilidioksidipäästöjä, jonka lisäksi kaukojäähdytys vähentää kylmäkoneissa käytettävien kylmäaineiden aiheuttamia kasvihuonekaasupäästöjä. Kaukolämpöverkkoa muistuttavan kaukojäähdytysverkon rakentaminen vaatii suuria investointeja. Nykyisin jakeluverkon rakenteena käytetään 2Mpuk- rakennetta, jonka todettiin olevan teknistaloudellisesti soveltuvin vaihtoehto Helsingin Energian kaukojäähdytysverkkoon. Myös PE 100 putkia voitaisiin käyttää PN 16 paineluokassa alle DN 300 kokoluokkaa vastaavissa johdoissa, ja PN 10 paineluokassa alle DN 400 johdoissa. Kaukolämpöverkon paineluokan valinta vaikuttaa oleellisesti investointikustannuksiin PE- putkilla ja joillekin alueille kannattanee rakentaa alemman paineluokan omaava erillisverkko PE- putkista. Happidiffuusion kautta PE- putkista pääsee jonkin verran happea verkkoon, mutta määrät ovat melko pieniä, eikä muitakaan teknisiä esteitä hyvin korroosiota kestävien PE- putkien käytölle ole. 2Mpuk- rakenteelle suurimman riskin aiheuttaa elementtien liitoskohdista teräsputken pinnalle pääsevä ulkopuolinen vesi. Koska kaukojäähdytysjohdot ovat lisäksi yleensä ympäristöä kylmempiä, kondensoivat ne vettä pinnallensa kaukolämpöjohdoista poiketen. Ulkopuolisen veden aiheuttamaa riskiä voitaisiin pienentää eristämällä liitoskohdat sähkömuhveilla. Verkoston rakentamiskustannuksia ja liikenteelle aiheutuvia haittoja voidaan vähentää ojattomia rakentamismenetelmiä, kuten suuntaporausta käyttämällä.
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Recent decades have seen both what has been referred to as an "inflation of historical monuments" and an acceleration of the process of "monumentification" affecting buildings of relatively recent date. In order to gain a better understanding of this, Kovacs looked at the experience in countries of Central Europe (Romania, Hungary, Slovenia, the Czech Lands, Slovakia), discovering a number of similarities as well as differences in detail. More important, however, was the discovery of the much wider importance of this phenomenon as a whole, which is particularly visible in this part of Europe, where "European" theory and practice of monument preservation are combined with progressivist demolitionism and traditional "natural" attitudes towards the built environment. Kovacs found that monument preservation has not only become a major occupation within building activity seen as a matter of anthropology, but also seems to be the determining feature of the contemporary cultural attitude. The scale of preservation activity has long since reached the level of urban design as an essential criterion for matters of future development, making it necessary to extend the conclusions of theoretical research down to broader generalities of the building domain. Kovacs then looked at the specific features of the countries concerned, including the survival of traditional building techniques in Romania, and the wide variety of preservationist policies in use.
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Ponencia en el II Congreso Internacional de Historia de la Construcción celebrado en Cambridge (Reino Unido).
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El entorno alpino de los Grisones ha sido un laboratorio donde experimentar un método arquitectónico procedente de diversas fuentes durante los años 70 en la ETHZ. Este método ha producido durante las últimas tres décadas un discurso teórico propiamente suizo alemán. La tradición continúa siendo un valor cultural para la comunidad alpina de los Grisones, que apuesta por seguir relacionando la arquitectura con su historia y su paisaje. La especificidad de cada entorno suizo alemán es un hecho obvio pero, por encima de sus rasgos característicos, hay un denominador común que les da unidad en silencio: se trata de una idea de la construcción. El fenómeno de los Grisones es territorial en su localización concreta, pero comparte el trasfondo teórico del resto de la arquitectura suizo alemana reciente. La tesis recorre transversalmente las condiciones que han dado lugar a esa trayectoria común hasta la actualidad, en que la arquitectura suizo alemana se halla precisamente en un momento de cambio generacional. La obra de Peter Märkli constituye en esta tesis un paradigma de la voluntad suizo alemana por formar parte de la continuidad cultural de la arquitectura, como una actitud de resistencia compartida frente al mundo globalizado. La tesis se articula a partir de ocho proyectos recientes, realizados por arquitectos suizo alemanes en el entorno del territorio alpino de los Grisones. Estos proyectos condensan la trayectoria arquitectónica suizo alemana durante el siglo XX, así como el fenómeno arquitectónico que ha tenido lugar en el entorno de los Grisones durante las últimas tres décadas. La tesis analiza a través de cada pareja de proyectos los episodios teóricos, artísticos y filosóficos más relevantes que se sintetizan en estas obras, así como sus referentes arquitectónicos y la dimensión trascendente de los materiales en los que la cultura suiza hunde sus raíces: la madera, la piedra y el hormigón. Las vanguardias pictóricas, el Movimiento Moderno y las corrientes humanistas y regionalistas que se fueron sucediendo durante el pasado siglo, configuran el escenario en el que tomó cuerpo la sensibilidad arquitectónica suizo alemana reciente, que emerge a través de la compleja red de relaciones establecidas entre el panorama suizo y el internacional. El mismo bagaje teórico subyace al territorio suizo alemán a nivel general, por lo que asociarlo a través de esta tesis a proyectos realizados en un entorno característico, permite acceder a una realización concreta de ese debate en un entorno tan particular como son los Grisones. La aproximación a los proyectos es de carácter fenomenológico: la experiencia directa de los mismos ha sido el sustrato fundamental del enfoque de la tesis. El trabajo de campo no se limitó a visitar los proyectos que vertebran la tesis, sino que trató de abarcar las obras más relevantes de la producción suizo alemana reciente en los Grisones, con el fin de adquirir cierto grado de sensibilidad perceptiva hacia la singularidad de su identidad territorial. La tesis hace especial hincapié en las obras de Peter Märkli y Peter Zumthor, representantes de los dos extremos del discurso suizo alemán reciente, respecto a la materialidad y al carácter de la secuencia espacial, sistemático o fluido respectivamente, pero que asimismo comparten el clasicismo formalista que subyace al fenómeno suizo alemán. Los dos proyectos que establecen el periodo 1992-2004 explorado por esta investigación constituyen dos hitos fundamentales. El Museo de La Congiunta en Giornico de Peter Märkli se construyó en 1992 y se erige a partir de entonces como un icono arquitectónico de la condensación típicamente suizo alemana de base reductiva. Este paradigma de síntesis conceptual y constructiva comenzó a forjarse en la década de 1930 de la mano del Konkrete Kunst formulado por Max Bill, que es la única manifestación artística genuinamente suiza del siglo XX y que desarrolló pictóricamente los valores de precisión, rigor, racionalismo y abstracción afines a la sensibilidad suizo alemana. En segundo lugar, el proyecto para la rehabilitación de la Villa Garbald y la construcción de la Torre Roccolo en Castasegna llevado a cabo por Miller & Maranta en 2004, supuso la consumación de la Analoge Architektur, que fue la primera corriente arquitectónica propiamente suiza, desarrollada durante la década de 1980 por Miroslav Sik. La Deutscher Tendenza es un periodo de la trayectoria suizo alemana reciente poco conocido, representado por una figura tan relevante como es Peter Zumthor. Las obras que proyectó Zumthor entre 1979 y 1985 forman parte de un periodo en que el arquitecto se encontraba profundamente influido por el neorracionalismo italiano, como ilustra la escuela de Churwalden de 1983. La arquitectura suizo alemana reciente exploró sistemáticamente los sistemas compositivos de las vanguardias pictóricas y del Movimiento Moderno, por encima de su formalismo concreto. La segunda fase de la obra de Zumthor entre 1985 y 1996 se caracteriza por la transfiguración del plano libre del sistema compositivo neoplasticista desarrollado por De Stijl, plano que adquirió grosor hasta convertirse en la caja articuladora de la fluidez de la secuencia espacial. El formalismo de Zumthor en esta fase implica la prioridad del esquema compositivo, compuesto por un perímetro regular en el que se reúnen las cajas que, como las superficies de color de las composiciones de Mondrian, articulan el espacio a su alrededor. La Residencia de Masans de Zumthor de 1993 es un proyecto canónico de este sistema compositivo, que culmina en el esquema radial de las Termas de Vals de 1996. La imagen poética se convirtió en el lenguaje propio del pensamiento de la arquitectura suizo alemana, que permitía una reflexión no verbal, a partir de unos pocos arquetipos fundamentales. Los arquitectos del Ticino buscaron en la Tendenza italiana durante la década de 1970 una alternativa al insostenible modelo territorial que estaba destruyendo su paisaje cultural. Algunos de estos arquitectos comenzaron a dar clase durante esa década en la ETHZ, por lo que transmitieron sus inquietudes al alumnado e introdujeron a Aldo Rossi en la facultad, que era uno de los máximos representantes de la Tendenza. El método analógico de Rossi, basado en la psicología analítica de Carl Jung, fue una influencia fundamental en la ETHZ durante los años 70. Rossi partía de una teoría afín al colectivo intelectual suizo que los arquitectos de la ETHZ pronto comprendieron que debían independizar del contexto italiano, desarrollando su propio método a partir de 1985 con la Analoge Architektur. El valor de la preexistencia de acuerdo a este método incipiente se hallaba en su papel articulador de la continuidad cultural de una comunidad, que Miroslav Sik definió a partir de su concepto de Altneue (literalmente, lo Nuevo-Viejo). La fusión entre lo nuevo y lo viejo era la base de la espontaneidad con la que habían crecido los asentamientos históricamente. Sik consideraba que la continuidad dependía de la comprensión de los patrones preexistentes, con el objeto de mantener su vigencia mediante la incorporación de estrategias contemporáneas, que renovarían su significado sin perder su esencia. La Casa Gugalun en Versam de Zumthor de 1994 supone una aproximación a escala doméstica a este planteamiento. La arquitectura suizo alemana reciente a menudo busca en sus referentes plásticos una manera de explorar ámbitos poco accesibles para la disciplina arquitectónica. El pensamiento arquitectónico basado en la imagen poética se implementa a partir de la tectónica de la construcción, que es el medio para comunicar una idea vertebradora del proyecto de principio a fin. La construcción como medio introduce el concepto clave de la apariencia de la arquitectura, estrechamente relacionado con la filosofía idealista de Friedrich Schiller. La apariencia debe expresar el sentido conceptual de la obra, que los arquitectos suizo alemanes denominan idea, por lo que la construcción no tiene un valor por sí misma, sino en cuanto a la apariencia. La Capilla de Oberrealta de Christian Kerez de 1993 puede ser considerada una obra escultórica en el paisaje, más próxima a las artes plásticas que a la arquitectura. La tensión que surge entre la figura ideal y la pieza sometida a una sutil deformación confiere un carácter dinámico a la composición, que intensifica el efecto perceptivo, de acuerdo a la teoría del pensamiento visual de Rudolph Arnheim. La deformación al servicio de la psicología de la percepción es un fenómeno que caracteriza la arquitectura suizo alemana reciente. El concepto de Forme Forte (forma fuerte) fue introducido por Martin Steinmann para caracterizar el objeto arquitectónico denominado internacionalmente Swiss Box. Este concepto se caracteriza por una predilección por lo monolítico, lo unitario y lo arquetípico. La condición más sustancial de una Forme Forte es, sin embargo, la de configurar un elemento estructurador del entorno. Tanto la base morfológica de una Forme Forte, como su capacidad para estructurar el lugar, se corresponden con los conceptos de arquetipo y monumento de la teoría de Rossi. La tesis explora el sentido de la deformación en la producción suizo alemana reciente, a partir de la Escuela de Paspels de Valerio Olgiati de 1998 y la Torre Roccolo de Villa Garbald de Miller&Maranta de 1998. La teoría tectónica de Gottfried Semper y la razón de la forma de Adolf Loos constituyen el sustrato teórico, que relaciona la actividad existencial de habitar con la materialidad de la arquitectura suizo alemana reciente. La teoría tectónica de Semper fundamenta las revisiones posteriores de los sistemas constructivos tradicionales suizo alemanes. Esta influencia sirvió como base a la vanguardia suiza de la Neues Bauen, que desarrolló un racionalismo funcionalista durante las décadas de 1920 y 1930, que constituye una gramática de base no simbólica. Esta gramática constituye el fundamento de la transición del orden clásico a la materialidad como instrumento compositivo durante la segunda mitad del siglo XX, consolidando el concepto de la base material de la forma. La revisión de la tradición regionalista y racionalista llevada a cabo por la generación de arquitectos suizo alemanes de la década de 1950 y 1960, constituyó una investigación lingüística sustancial. Rudolph Olgiati es la figura determinante de este periodo. La revisión de esta investigación se codificó en clave estructuralista durante los años 70 en la ETHZ, influenciada por la presencia de Roland Barthes como profesor invitado. Esta revisión constituyó la base de la articulación tectónica propiamente suizo alemana todavía vigente, como ilustra expresamente la obra de Burkhalter&Sumi en esta tesis. La obra de Gion Caminada en Vrin entre 1995 y 2002 aporta una intensa investigación sobre el Strickbau, que implementa una y otra vez variaciones sobre un sistema tradicional, ilustrando las infinitas posibilidades que ofrece un lenguaje, paradójicamente limitado por los medios disponibles en un entorno alpino aislado. Para terminar Jürg Conzett es el ingeniero con el que han desarrollado sus proyectos la mayoría de los arquitectos en el entorno de los Grisones, formado durante 8 años con Zumthor y colaborador habitual de Caminada entre otros. Conzett es el referente que relaciona la ingeniería con la arquitectura en el ámbito de esta tesis, imprescindible en el contexto de esta investigación. ABSTRACT The Alpine setting of Grisons has been a laboratory for architectural experimentation with an approach forged in the 1970s from various sources in the Swiss Federal Institute of Technology in Zurich (ETHZ). This method has produced a uniquely German-Swiss theoretical discourse over the past three decades. Tradition continues to be a cultural value for Grisons, a region committed to continue linking its architecture with the region’s history and landscape. The specificity of the German-Swiss environment is obvious, but beyond its characteristic features, there is a common denominator that gives these settings a silent unity: it is an idea of building. The phenomenon of Grisons is geographic in its specific location, but it shares the theoretical basis of the rest of the new German-Swiss architecture. This thesis transversely delves into the conditions that have shaped this common path up to the present, just as German-Swiss architecture is going through a time of generational change. In this thesis, Märkli Peter's work constitutes a paradigm of the German-Swiss will to uphold the cultural and architectural continuity of the region, exemplifying an attitude of shared resistance to the globalized world. The thesis is structured around eight recent projects carried out by German-Swiss architects in the Alpine region of Grisons. These projects represent the trajectory of twentieth century German-Swiss architectural history, as well as the architectural phenomenon that has taken place in the environs of Grisons over the past three decades. Through these projects the thesis analyzes the most relevant theoretical, artistic and philosophical references that are synthesized in the works, as well as their architectural references and the transcendental dimension of the materials in which Swiss culture is rooted: wood, stone and concrete. The artistic avant-garde, together with Modernism and the humanistic and regional movements that occurred during the last century, set the stage for present-day German-Swiss architectural sensitivity, which emerges from a complex web of relationships established between the Swiss and international panorama. This same theoretical background and experience underlies all of the German-Swiss territory in general, so associating it through this thesis to a particular context allows the description of a specific embodiment of this debate, within the unique environment of Grisons. The methodological approach to analyzing the projects was phenomenological: direct experience is the main substrate underpinning the focus of the thesis. Field work was not limited to visiting the projects featured in the thesis, but rather encompassed the most important works of recent German-Swiss construction in the Grisons in order to gain some degree of perceptual sensitivity to the uniqueness of its territorial identity. The present paper puts special emphasis on the works of Peter Märkli and Peter Zumthor, who share the formal classicist perspective of the German-Swiss context but stand on opposite sides of the philosophical spectrum with regard to the notion of materiality and the nature of space, which they conceive as systematic or fluid, respectively. The two projects that establish the boundaries of the time period 1992–2004 explored by this research represent two key milestones. The Museum La Congiunta in Giornico, by Peter Märkli, was built in 1992 and quickly established itself as an architectural icon of German-Swiss reductionism. This paradigm of conceptual and constructive synthesis began to take shape in the 1930s under the banner of Konkrete Kunst (Concrete Art), led by Max Bill. The only genuinely Swiss artistic movement of the twentieth century, Konkrete Kunst was characterized by the artistic values of precision, rigor, rationalism and abstraction, sentiments that were very close to the German-Swiss tradition. Secondly, the project for the rehabilitation of Villa Garbald and the construction of the Roccolo Tower in Castasegna, conducted by Miller&Maranta in 2004, represented the consummation of the Analoge Architektur, which was the first truly Swiss architectural movement, spearheaded in the 1980s by Miroslav Sik. The Deutscher Tendenza is a little-known period of recent German-Swiss history, represented by the important figure of Peter Zumthor. The projects that Zumthor led between 1979 and 1985 are part of a period when Italian Neo-Rationalism exercised a profound influence on the architect, as illustrated by the Churwalden School, circa 1983. Recent German-Swiss architecture systematically explored the compositional systems of the artistic avant-garde and Modernism, beyond its specific formal aspects. The second phase of Zumthor's work, between 1985 and 1996, is characterized by the transfiguration of the free plane, neoplastic compositional system developed by De Stijl, a plane that thickened until it became the box articulating fluidity from the spatial sequence. Zumthor's formalism in this phase prioritizes the compositional scheme, consisting of a regular perimeter in which the boxes that -like Mondrian’s colored surfaces- arrange the space around it. Zumthor’s Masans Residence, circa 1993, is a canonical project of this compositional system, which culminates in the radial pattern of the Therme Vals, circa 1996. The poetic image became the appropriate language of thought for German-Swiss architecture, which invited a nonverbal reflection inspired by a few fundamental archetypes. The architects of Ticino sought, through the Italian Tendenza of the 1970s, an alternative to the unsustainable territorial model that was destroying their cultural landscape. Some of these architects began to teach during that decade at ETHZ, and naturally they transmitted their unease to their students. These architects also introduced Aldo Rossi, one of the leading representatives of the Tendenza, to the school. Rossi’s analogue method, based on the analytical psychology of Carl Jung, was a major influence on the ETHZ during the 1970s. Rossi’s theoretical grounding was very much in tune with Swiss intellectualism, and it did not take long for architects from ETHZ to realize that they should break away from the Italian context, developing their own method from 1985 on with the Analoge Architektur. The value of the pre-existing conformity of this emerging method, stemmed from its role in facilitating the cultural continuity of a community, which Miroslav Sik defined in his concept of Altneue (literally, Old-new). This fusion of old and new was the basis for the spontaneity with which settlements had historically grown. Sik considered that continuity depended on understanding the existing patterns and sustaining their relevance through the incorporation of contemporary strategies, which would renew their meaning without losing their essence. Zumthor’s Gugalun House in Versam, circa 1994, is a domestic-scale approach to this philosophy. Modern German-Swiss architecture often looks to its references in visual art for a way to explore areas that are normally inaccessible to the architectural discipline. Architectural thinking based on the poetic image is achieved through a building’s tectonics, which communicate the core idea of a project from start to finish. The understanding of construction as a medium introduces the key concept of the appearance in architecture, closely related to the idealistic philosophy of Friedrich Schiller. The appearance should express the conceptual meaning of the work, which German-Swiss architects call the idea, so that the building does not have value in and of itself, but only in terms of its appearance. The Oberrealta Chapel by Christian Kerez, circa 1993, can be considered a sculpture in the landscape, closer to the visual arts than to architecture. The tension that arises between the ideal figure and the piece subjected to a subtle deformation confers a dynamic character onto the composition, intensifying the perceptual effect, according to Rudolf Arnheim’s theory of visual thought. The deformation in the service of the psychology of perception is a phenomenon that characterizes recent German-Swiss architecture. Martin Steinmann introduced the Forme Forte (Strong Form) concept to describe the architectural object known internationally as the Swiss Box. This concept is characterized by a predilection for all things monolithic, unitary and archetypal. The most substantial condition of a Forme Forte, however, is the configuration of a structuring element in the environment. Both the morphological basis of a Forme Forte and its ability to frame the place, correspond to the concepts of archetype and monument put forward by Rossi’s theory. The present thesis explores the sense of deformation in recent German-Swiss production, based on the School of Paspels by Valerio Olgiati, circa 1998 and the Roccolo Tower in Villa Garbald, by Miller&Maranta, circa 1998. Gottfried Semper’s tectonic theory and Adolf Loos’s reason for form constitute the theoretical foundation that links the existential activity of dwelling to the materiality of recent German-Swiss architecture. Semper’s tectonic theory laid the foundation for subsequent revisions of the German-Swiss traditional building systems. This influence was the basis for the Swiss avant-garde of Neues Bauen, which developed a functional rationalism during the 1920s and 30s that served as a non-symbolic grammatical foundation for the transition from classical order to materiality as a compositional tool. During the second half of the twentieth century, this architectural grammar helped consolidate the concept of the material base of the form. The revision of the regionalist and rationalist tradition, carried out by the generation of German-Swiss architects of the 1950s and 60s, constituted a substantial linguistic investigation. Rudolph Olgiati is the key figure of this period. The research was codified in terms of structuralism in the 1970s in ETHZ and influenced by the presence of Roland Barthes as a visiting professor. This revision was the basis of the uniquely German-Swiss tectonic design still in use today, as specifically illustrated by the work of Burkhalter & Sumi in this thesis. Gion Caminada's work in Vrin between 1995 and 2002 offers an extensive study on the Strickbau, which implements variations on a traditional system again and again, illustrating the endless possibilities of a language that paradoxically seems limited by the available resources in a remote Alpine setting. Finally, Jürg Conzett is the engineer with whom most architects in the Grisons region have developed their projects. Trained under Zumthor for 8 years, and a regular collaborator of Caminada, among others, Conzett is the reference point linking engineering with architecture in this thesis, essential in the context of this research.
Resumo:
La tesis se compone de una primera parte introductoria, en la que se recogen las distintas opiniones y definiciones de la arquitectura “popular”, el estado de la cuestión, comentando los artículos y publicaciones realizados sobre la Mancha. La segunda parte profundiza en aspectos generales previos al análisis edificatorio central de la tesis, con los siguientes capítulos: -Estudio de los condicionantes físicos, históricos, socio-económicos y culturales de la comarca de la Mancha Baja. Acotando el territorio. -Una visión general sobre la arquitectura tradicional de la provincia de Ciudad Real, por comarcas. -Un estudio de las distintas tipologías edificatorias tradicionales, con ejemplos en la comarca manchega. -El análisis de materiales constructivos, elementos y sistemas utilizados en las construcciones tradicionales en la Mancha Baja. La tercera parte, desde la premisa de la representación gráfica, apoyado en un anexo con dibujos de ciento treinta y siete edificios populares de Manzanares y comarca, estudia: El trazado urbano y las casas de Manzanares; desde los levantamientos de plantas, alzados y secciones, emplazamiento en la manzana y fotografías, se realiza una descripción completa, con noventa y seis ejemplos. Además de llegar a las conclusiones derivadas del análisis de estas edificaciones, los objetivos pretendidos con este estudio serían también: Realizar un primer trabajo aproximativo, desde la visión arquitectónica, de la arquitectura tradicional manchega. Recopilar toda la información existente que pueda relacionarse con la arquitectura popular en la comarca, y citar los escritos y publicaciones de referencia para posteriores estudios. Se estudia la geomorfología, el clima, el territorio, la economía, la sociología, etc…, para obtener una información clave, además de los materiales, técnicas constructivas y morfología de las edificaciones. Se destaca el apartado de los edificios preindustriales tradicionales, como molinos de viento, de agua, palomares, pósitos y bodegas con el análisis de varios ejemplos, por su importante presencia en las poblaciones. Por último se desarrolla un amplio bloque sobre bibliografía de arquitectura popular, la consultada y la general. La arquitectura popular de la mancha baja es tapial cubierto de teja árabe, cerrada al exterior, pero abierta a grandes patios, de planta baja y cámaras altas, con elementos auxiliares de protección y acceso, que revisten la aparente simplicidad volumétrica de estos complejos, viviendas-almacén. Con un complejo programa tanto agrícola como doméstico. De gran protección frente al clima, con escasa decoración, esquemas espaciales primitivos y con mayor envergadura estructural en las dependencias agropecuarias. Una arquitectura que mezcla el uso doméstico y el productivo, pero que al evolucionar aumenta su diferenciación. Edificios que mantienen las mismas cualidades estéticas, repitiendo formas y volúmenes, pero de peculiares configuraciones espaciales, se repiten los materiales y técnicas constructivas, así como elementos arquitectónicos con pocas variaciones, pero no existen dos conjuntos similares. No podemos utilizar un ejemplo como modelo de casa manchega. Evoluciona de la casa bloque, básica y primitiva, con ejemplos escasos en las poblaciones más deprimidas, a la casa compleja, donde se separan con claridad las dependencias agropecuarias de las vivideras. Evoluciona de una casa rural, con los mismos esquemas, ya se ubique en el campo o en núcleos de población, a la casa urbana, entre medianerías, en la que se puede encontrar una transformación paralela, desarrollándose programas domésticos, más especializados, mezclados con arquitecturas cultas, con programas que reflejan las nuevas necesidades de la sociedad urbana del siglo XX. ABSTRACT The thesis is composed of a first part that is collected as introducing different views and definitions of popular architecture, the state of affairs, commenting on articles and publications carried out at the Mancha. The second part explores general issues before the main urban analysis of the thesis, with the following chapters: -A study of the geographic, historical, socio-economic and cultural conditions of the region of the Mancha Baja. Delimiting the territory -A tour with an overview of the province of Ciudad Real by regions. -A study of the different traditional building types, with examples in the region from the Mancha. -The Analysis of building materials, components and systems used in traditional buildings in the Mancha Lower The third part studies from the premise of the drawing: The urban planning of the towns to study and houses of Manzanares, from the execution of plans, elevations and sections, sites in the blocks, old photographs, a full description is made, covering a wide range of examples, highlighting the “evolution during the twentieth century, in its last quarter, buildings of popular character “, which is the ultimate aim of the thesis. In addition to reaching the conclusions drawn from the analysis cards of these buildings, the objectives pursued with this study would be also: This paper is the realization of a first rough work from the architectural vision of traditional architecture from the Mancha. To Search a work method for approaching the popular architecture, other than those made so far by other studies of historians, engineers and sociologists, with the graphical representation and the buildings would be studied like living organisms that evolve over time. To collect all the current information that It can be able to connect itself with the popular architecture in the region, and cite the writings and publications of reference for future studies. Geomorphology, climate, topography of the place is studied to obtain a key information about materials, construction techniques and morphology of the buildings. A section is opened to study the case of traditional industrial buildings like windmills, flour mill, pigeon lofts, public granary, threshing floor and cellars with the analysis of several examples; its importance is highlighted in the urban plan of the town. Finally a large block of popular literature on architecture is developed, consulted for work is distinct from the general existing on the subject. The popular architecture from the Mancha is built of rammed earth and roofs inclined of Arabic tiles, the buildings are closed to the outside, but they are open around large courtyards, and ground floor and camera high, with additional elements of protection, they are opened to patios. The manor has a complex program on agricultural and domestic activity. Large climate protection, poor decoration, quite primitive in shaping living spaces, and more structural scale in storage and processing units of agriculture-related products, mainly wine, cereal and to a lesser extent oil. These architecture combines the domestic and productive use, but which will evolve and they are distinguishing, both enclosed spaces such as courtyards. The buildings keep the same aesthetic qualities because they repeat shapes and volumes, but they maintain their spatial configuration individually; the materials, building techniques and architectural elements are repeated with slight variations, but there aren´t two identical houses. This architecture evolved from the block, basic and primitive house, with few examples in the most deprived towns, to the complex house, where agricultural units are clearly separated of domestic rooms. It developed from a country house (with the same patterns) whether it is located in the countryside or in the towns, to an urban house, in which we can find a parallel transformation, developing domestic programs, more specialized, mixed with cultivated architectures, with programs that reflect the changing needs of urban society of the twentieth century.
Resumo:
Wood is a natural and traditional building material, as popular today as ever, and presents advantages. Physically, wood is strong and stiff, but compared with other materials like steel is light and flexible. Wood material can absorb sound very effectively and it is a relatively good heat insulator. But dry wood burns quite easily and produces a great deal of heat energy. The main disadvantage is the high level of combustion when exposed to fire, where the point at which it catches fire is from 200–400°C. After fire exposure, is need to determine if the charred wooden structures are safe for future use. Design methods require the use of computer modelling to predict the fire exposure and the capacity of structures to resist those action. Also, large or small scale experimental tests are necessary to calibrate and verify the numerical models. The thermal model is essential for wood structures exposed to fire, because predicts the charring rate as a function of fire exposure. The charring rate calculation of most structural wood elements allows simple calculations, but is more complicated for situations where the fire exposure is non-standard and in wood elements protected with other materials. In this work, the authors present different case studies using numerical models, that will help professionals analysing woods elements and the type of information needed to decide whether the charred structures are adequate or not to use. Different thermal models representing wooden cellular slabs, used in building construction for ceiling or flooring compartments, will be analysed and submitted to different fire scenarios (with the standard fire curve exposure). The same numerical models, considering insulation material inside the wooden cellular slabs, will be tested to compare and determine the fire time resistance and the charring rate calculation.
Resumo:
Wood is a natural and traditional building material, as popular today as ever, and presents advantages. Physically, wood is strong and stiff, but compared with other materiais like steel is light and flexible. Wood material can absorb sound very effectively and it is a relatively good heat insulator. But dry wood does bum quite easily md produces a great deal ofheat energy. The main disadvantage is the high levei ofcombustion when exposed to fíre, where the point at which it catches fire is fi-om 200-400°C. After fu-e exposure, is need to determine if the charred wooden stmctures are safe for future use. Design methods require the use ofcomputer modelling to predict the fíre exposure and the capacity ofstructures to resist fhose action. Also, large or small scale experimental tests are necessary to calibrate and verify the numerical models. The thermal model is essential for wood stmctures exposed to fire, because predicts the charring rate as a fünction offire exposure. The charring rate calculation ofmost stmctural wood elements allows simple calculations, but is more complicated for situations where the fire exposure is non-standard and in wood elements protected with other materiais.
Resumo:
This paper present a study on the behaviour of tabique walls, concerning its fire resistance. This work is based on the experimental analysis of real scale tabique panels. Such walls were made in pine wood with an earth-based mortar finishing. In order to assess the earth-based mortar thickness effect on the fire resistance of the wall, three specimens were tested with three different mortar thicknesses of 15 mm, 10 mm and 5 mm. The earth-based mortar was previously analysed in the laboratory. The wooden structures were constructed based on traditional tabique technique. The experimental models were tested in a fire-resistance furnace, according to the ISO 834 standard fire. Temperatures were recorded using two data acquisition systems (spot measuring and field measuring). Fire resistance of test elements is expressed as the time during which the appropriate criteria have been satisfied so that one can predict the time before collapse, increasing both people and property safety. The obtained results are of great importance as they allow to improve the knowledge on tabique walls behaviour subjected to fire conditions. Two performance criteria were verified: the integrity criteria and the insulation criteria.
Resumo:
What is the architecture of transience? What role does architecture play in the impermanent context of the nomad? What form does architecture take when our perception of shelter transforms from fixed and static to flexible and transportable? How does architecture react to the challenges of mobility and change? Traditional building forms speak of stability as an important aspect of architecture. Does portability imply a different building form? During the1950s Buckminister Fuller introduced the idea of mobile, portable structures. In the 1960s Archigrams' examples of architectural nomadism made the mobile home an accepted feature of our contemporary landscape. Currently, new materials and new methods of assembly and transportation open opportunities for rethinking portable architecture. For this thesis, a shelter was developed which provides inhabitable space and portability. The shelter was designed to be easily carried as a backpack. With minimum human effort, the structure is assembled and erected in a few minutes. Although this portable shelter needs to be maneuvered, folded and tucked away for transportation, it does meet the demands of nomadic behavior which emphasizes comfort and portability.