998 resultados para Hygrothermal conditions
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Current worldwide building legislation requirements aim to the design and construction of technical services that reduce energy consumption and improve indoor hygrothermal conditions. The retail sector in Spain, with a lot of outdated technical systems, demands energy conservation measures in order to reduce the increasingly electrical consumption for cooling. Climatic separation with modern air curtains and advanced hygrothermal control systems enables energy savings and can keep suitable indoor air temperature and humidity of stores with intense pedestrian traffic, especially when located in hot humid climates. As stated in the article, the energy savings in commercial buildings with these systems exceeds 30%
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Dissertação de Natureza Científica para obtenção do grau de Mestre em Engenharia Civil na Área de Especialização de Edificações
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Esta tesis se enmarca dentro de una línea de investigación iniciada en el 2004 focalizada en el estudio de soluciones constructivas energéticamente eficientes para la crianza del vino. El objetivo principal es promover el ahorro energético y la sostenibilidad en el diseño de la sala de crianza de las bodegas. Para ello, se profundiza en el estudio de las bodegas subterráneas, ejemplo de eco-construcción, ya que por lo general proporcionan condiciones adecuadas para la crianza sin gasto energético en climatización. En concreto, se abordan aspectos clave para la caracterización y comprensión del funcionamiento de estas construcciones, que en muchas ocasiones condicionan el éxito o el fracaso de las mismas. Así, se analiza el complejo comportamiento de la ventilación natural a lo largo del año, determinando los factores que la condicionan, desvelando el papel que desempeña tanto el túnel de acceso como las chimeneas de ventilación en su funcionamiento. Además, se desarrollan y validan modelos de simulación mediante CFD, que permiten evaluar y predecir con detalle el comportamiento termofluidodinámico de las construcciones subterráneas. Por otra parte, se cuantifica la uniformidad y estabilidad de la sala de crianza a lo largo del año, información que permite fijar recomendaciones y pautas concretas de diseño de los planes de monitorización. Finalmente, se determinan las diferencias de comportamiento higrotérmico existentes entre un amplio abanico de bodegas subterráneas para vino tinto, bodegas representativas de otras soluciones constructivas alternativas de vino tinto, así como bodegas para cavas y vinos generosos, enmarcando el comportamiento de estas bodegas en un contexto global. Además, se desarrollan metodologías adaptadas a las características particulares de estas construcciones, en concreto un sistema de monitorización basado en termografía infrarroja para llevar a cabo inspecciones puntuales para el control ambiental de grandes naves de crianza. Es de esperar que los estudios técnicos y las herramientas desarrolladas ayuden a mejorar el diseño de nuevas bodegas, y a la mejora de las condiciones higrotérmicas de las ya existentes, colaborando a que España siga situada en la vanguardia de la producción de vino de calidad. ABSTRACT This thesis is part of the research started in 2004 and focusing on the study of the energy efficiency in wine aging constructive solutions. The main objective is to promote energy conservation and sustainability in the design of wine aging rooms. To do so, this study focuses on the analysis of the underground cellars, example of eco-construction, since they usually provide adequate conditions for wine aging without using air-conditioning systems. In particular, key aspects for characterizing and understanding these constructions, which often determine the success or failure of them. Thus, the complex behavior of natural ventilation throughout the year is discussed, determining the influencing factors and revealing the role of both the access tunnel and the ventilation chimney. In addition, numerical models are developed and validated using CFD simulation, allowing an in-depth assessment and prediction of the thermofluidynamic behavior in underground constructions. Moreover, uniformity and stability of the aging room throughout the year is quantified, allowing for precise information useful to set recommendations and design guidelines for defining monitoring plans. Finally, hygrothermal behavior differences between a wide range of underground cellars for red wine, red wine wineries with alternative construction solutions and wineries for generous wines and cava wines, In addition, new methodologies adapted towards the particular characteristics of these constructions, a monitoring system based on infrared thermography to perform periodic inspections for environmental controls of the aging rooms, are developed. It is expected that the technical studies and tools developed here will help to improve the design of new wineries, and also the hygrothermal conditions of the existing ones, headed for keeping Spain in the forefront of the countries producing high quality wine.
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La presente investigación aborda el análisis de las cualidades del entorno urbano que inciden en la experiencia perceptiva de su recorrido. Los intereses que la motivan tienen que ver con la recuperación de la ciudad para el viandante y se sitúa dentro de un marco de intereses más amplio como es el de la ciudad sostenible. En primer lugar, se contextualiza el tema de la experiencia del recorrido a través de disciplinas diferentes como son el cine, la literatura, la arquitectura, el urbanismo, la arquitectura del paisaje, la psicología y la estética ambiental. De este modo, se refuerza el argumento en torno al papel que desempeñan la forma y otros estímulos sensoriales en la experiencia del espacio, ya sea éste urbano, arquitectónico o natural. La experiencia que las personas viven al desplazarse por un entorno viene definida por infinitos factores que van desde la configuración física del entorno recorrido, hasta el aprendizaje cultural de la persona que camina; desde los estímulos sensoriales que se reciben, hasta las condiciones físicas que posibilitan la funcionalidad del recorrido; desde las sutilezas de índole secuencial que se desvelan a medida que avanzamos, hasta las condiciones higrotérmicas en el momento en que se lleva a cabo el desplazamiento. Sin embargo, factores como las motivaciones y atenciones personales del que anda, así como sus recuerdos de experiencias anteriores, deseos, imaginación y estado de ánimo, también definen nuestra experiencia al caminar que, indudablemente, se encuentra ligada a nuestra personalidad y, por lo tanto, no puede ser exacta a la de otra persona. Conscientes de que todos estos factores se funden en un fenómeno global, y que no se dan en la vida por separado, nos hemos esforzado por independizar las cualidades sensoriales y formales, únicamente a efectos de investigación. La importancia del tema a investigar reside en las conexiones que existen entre las cualidades del medio construido y la experiencia cotidiana de su recorrido, en la medida en que dicha vinculación establece relaciones con la calidad de vida, la salud de los ciudadanos y sus sentimientos de identidad. En este sentido, el problema clave encontrado es que si la definición de la experiencia del recorrido urbano es demasiado amplia, se vuelve nebulosa e inoperativa, pero si se precisa demasiado, se pueden excluir variables importantes. Hemos concentrado nuestros esfuerzos en buscar un medio que permita hacer operativo el estudio de aspectos que, por su propia naturaleza, son difíciles de controlar y aplicar en la práctica. En este sentido, el campo de estudio que aúna interés en el tema, producción científica y vocación práctica, es el de la caminabilidad de las ciudades. Por esta razón, hemos situado nuestro trabajo dentro del marco de criterios que este campo establece para valorar un entorno caminable. Sin embargo, hemos detectado que los trabajos sobre caminabilidad tienden a desarrollarse dentro de la disciplina del planeamiento de transporte y, con frecuencia, siguiendo las mismas pautas que la investigación sobre el transporte motorizado. Además, la tendencia a proporcionar datos numéricos producto de la medición controlada de variables, para respaldar iniciativas dentro de los ámbitos de toma de decisiones, lleva consigo un progresivo alejamiento de los aspectos más sutiles y próximos de la experiencia de las personas y la especificidad de los lugares. Por estas razones, hemos estimado necesario profundizar en la experiencia peatonal explorando otras líneas de trabajo como son la habitabilidad de las ciudades, políticas llevadas a cabo para mejorar la calidad del espacio público o las certificaciones de sostenibilidad en el ámbito del urbanismo. También se han estudiado las aproximaciones gráficas a la representación y simulación de recorridos urbanos por su importancia en la comunicación y promoción de caminar. Para detectar las problemáticas implicadas en la definición de una herramienta que permita valorar, de manera operativa, la calidad de la experiencia del recorrido urbano, la metodología de valoración propuesta se ha basado en la combinación de distintos métodos y en la conjugación de tres aproximaciones: valoración por parte del investigador en calidad de experto, valoración realizada por el investigador en el papel de usuario y valoración por el ciudadano. El desarrollo de esta investigación se ha visto condicionado por la intención de aplicar lo estudiado en un caso práctico. El marco de criterios que los trabajos sobre caminabilidad de las ciudades establecen para que se dé un entorno caminable, se puede resumir en que concurran los siguientes factores: mezcla de usos, densidad de población y edificación relativamente altas, destinos públicos accesibles a pie, un alto grado de seguridad con respecto al tráfico y actos delictivos, alta funcionalidad (dimensiones, pendientes, etc.) y atractivo. Una vez definido el modelo de ciudad en que es pertinente realizar una investigación sobre las cualidades del entorno urbano responsables de que éste se perciba como atractivo, se escogió la ciudad de Taipei, entre otras razones, por cumplir con los requisitos restantes. Con respecto al caso práctico, el objetivo es detectar fortalezas y debilidades del área central de la ciudad de Taipei en cuanto a la experiencia perceptiva que proporciona a los viandantes. ABSTRACT This research addresses the analysis of the qualities of the urban environment that affect the perceptual experience of walking. The interests lying behind it are related to the recovery of the city for pedestrians, and is framed within the sustainable city framework of interests. Firstly, the issue of the experience of walking is contextualized through different disciplines such as film, literature, architecture, urban planning, landscape architecture, environmental psychology and aesthetics. This way, the argument about the role that form and other sensory stimuli play in the experience of space, whether it is urban, architectural or natural, is strengthened. The walking experience of people is defined by factors ranging from the physical configuration of the environment to the cultural background of the person who walks, from the sensory stimuli that are perceived to the physical conditions that enable the functionality of the walk, from the subtleties of sequential nature that are revealed as we move around to hygrothermal conditions at the specific time of walking. Nevertheless, factors such as personal motivations and attentions of the walker, as well as memories of past experiences, desires, imagination and mood, also define our walking experience that is undoubtedly linked to our personality and, therefore, it cannot be exactly the same as other people's experience. Being aware that all these factors come together in a total phenomenon and that, in real life, they do not exist separately, we focused on separating sensory and formal qualities only for research purposes. The importance of the research topic lies in the connections between the qualities of the built environment and the quotidian experience of walking through it, to the extent that such link establishes relationships with the quality of life, health and feelings of identity of citizens. In this sense, the key problem encountered is that, if the definition of urban walking experience is too broad, it becomes nebulous and non‐operational, but if it is too precise, important variables can be excluded. We concentrated our efforts on finding a way to operationalize the study of questions that, by their very nature, are difficult to control and apply in practice. In this regard, the field of study that combines interest in the topic, scientific production and practical purpose, is the walkability of cities. For this reason, we placed our work within the framework of the set of criteria that this field establishes for assessing an environment as walkable. However, we found that works on walkability tend to be developed within the discipline of transportation planning and often following the same guidelines that research on motorized transport. Furthermore, the tendency to provide numerical data as a result of the controlled measurement of variables in order to support initiatives in decision making areas, involves a progressive distancing from the proximity and the most subtle aspects of the experience of people, and from the specificity of places. For these reasons, we considered it was necessary to deepen into the study of pedestrians experience, by exploring other lines of work such as the livability of cities, implemented policies to improve the quality of the public space or sustainability certifications in urbanism. Graphic representation and simulation of urban walks are also studied due to their important role in communication and promotion of walking. In order to find the issues involved in defining a tool to assess, in an operational way, the quality of urban walking experience, the proposed assessment methodology is based on the combination of different methods and the synthesis of three approaches: assessment by the researcher as expert, assessment by the researcher playing the role of user and assessment by the citizens. The development of this research has been conditioned by our intention of applying it in a case study. The framework of criteria that works on walkability of cities set to define a walkable environment, can be summarized in the following factors: mix of uses, population and building density rather high, public destinations accessible on foot, high levels of safety in terms of traffic and crime, high functionality (dimensions, slopes, etc.) and attractiveness. After defining the model of city in which it is relevant to conduct an investigation on the qualities that are responsible of the attractiveness of the environment; Taipei City was selected because it meets the remaining requirements, among other reasons. Regarding the case study, the goal is to identify strengths and weaknesses in the central area of Taipei City in terms of the perceptual experience of pedestrians.
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Absorption due to immersion in aqueous media consisting of either saline or seawater or due to exposure to water vapor conditions and the attendant effect on the compressive properties of syntactic foam reinforced with E-glass fibers in the form of chopped strands were studied. Whereas the compressive strength decreased in samples exposed to water vapor, the saline or seawater immersed samples showed increase when compared to the dry sample. The decrease in strength in the vapor-exposed case is ascribed to higher absorption of water and to debonding and damaged features for interfaces. The enhancement of strength values for the samples immersed in saltish media is traced to the larger size of the chloride ion and resultant changes in the stress state around the fiber-bearing regions. Recourse to an analysis of scanning electron microscopic pictures of the compression-failed samples is taken to explain the observed trends.
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This article deals with the durability of 2D woven mat carbon/polyester, glass/isopolyester, and gel-coated glass/isopolyester reinforced composites under hygrothermic conditions with regard to marine applications. The test coupons were exposed to 60 degrees C and 70 degrees C at 95% RH for a maximum duration of 100 h. The samples were periodically withdrawn and weighed for moisture absorption and tested for the degradation in the mechanical properties such as ultimate tensile strength, flexural strength, interlaminar shear strength, and Young's modulus and flexural modulus. Carbon/isopolyester-based specimens showed greater stability with respect to degradation in the mechanical properties than the glass/isopolyester/gel coat- and glass/isopolyester-based specimens. Glass/isopolyester exhibited the maximum moisture absorption, whereas the minimum moisture absorption was found in glass/isopolyester/gel coat. Diffusion coefficient (D) was found to be the highest for glass/isopolyester and the lowest for glass/isopolyester/gel coat, based on the Fick's law of diffusion. Diffusion coefficient increases with the increase in temperature for all the specimens. Microstructure study of fractured specimens was carried out using scanning electron microscope to compare matrix/fiber debonding and matrix-degradation of fiber-reinforced polymer composites.
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An in situ experiment on a full-scale timber frame test building was carried out to study the hygrothermal performance of wood-hemp composite insulation in timber frame wall panels with and without a vapour barrier. The heat transfer properties and the likelihood of mould growth and condensation in the panels were compared. Step changes in the internal relative humidity were performed to explore the effects of high, normal and low internal moisture loads on the wall panels. No significant difference in the average equivalent thermal transmittance (U-values) between the panels with and without a vapour barrier was observed. The average equivalent U-values of the panels were close to the U-values calculated from the manufacturers’ declared thermal conductivity values of the insulation. The likelihood of condensation was higher at the interface of the wood-hemp insulation and the oriented strand board (OSB) in the panel without a vapour barrier. In terms of the parametric assessment of the mould germination potential, the relative humidity, the temperature and the exposure conditions in the insulation-OSB interfaces of the panel without a vapour barrier were found to be more favourable to the germination of mould spores. Nonetheless, when the insulations were dismantled, no mould was visually detected.
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An in situ experiment in a full scale timber frame test building was carried out to compare the hygrothermal performance of Hemp and Stone Wool insulations of identical thermal conductivity. Hemp and Stone Wool insulations were installed in timber frame wall panels without vapour barrier. The comparison was made in terms of heat transfer properties, likelihood of mould growth and condensation. Step changes in internal relative humidity were performed to explore the effect of high and normal internal moisture load on the wall panels. No significant difference between the average equivalent thermal transmittance (U-values) of the panels incorporating Hemp and Stone Wool insulations was observed. The average equivalent U-values of the panels were closer to the calculated U-values of the panels based on the manufacturers’ declared thermal conductivity of Hemp and Stone Wool insulations. It was observed that the placement of heat flux sensor along the depth of the insulation had significant influence on the measured equivalent U-value of the panels during high internal moisture load. The frequency and likelihood of condensation was higher in the interface of Stone Wool and Oriented Strand Board (OSB). In terms of the parametric assessment of mould germination potential, relative humidity, temperature and exposure conditions in the insulation-OSB interfaces were found to be favourable to germination of mould spore. However, when the insulations were dismantled, no mould was visually detected.
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Moisture and heat management properties of Hemp and Stone Wool insulations were studied by mounting them between a hot and a cold climate chamber. Both insulations were exposed to identical hygrothermal boundary conditions. Quasi steady state and dynamic tests were carried out at a range of relative humidity exposures. The likelihood of interstitial condensation was assessed and equivalent thermal conductivity values of the insulations were determined. The adsorption-desorption isotherms of the insulations were also determined in a dynamic vapour sorption (DVS) instrument. It was observed that the likelihood of condensation was higher in Stone Wool insulation than in Hemp insulation. Hemp insulation performed better in managing moisture due to its high hygric inertia and water absorption capacity. It was observed that the equivalent thermal conductivity of Stone Wool insulation was dependent on enthalpy flow and phase change of moisture. The equivalent thermal conductivity of Hemp insulation was close to its declared thermal conductivity in dynamic conditions when high relative humidity exposures were transient. In quasi steady state boundary conditions, when the insulation was allowed to reach the equilibrium moisture content at ranges of relative humidity, there was a moisture dependent increase of thermal conductivity in Hemp insulation.
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The thermal behaviour of halloysite fully expanded with hydrazine-hydrate has been investigated in nitrogen atmosphere under dynamic heating and at a constant, pre-set decomposition rate of 0.15 mg min-1. Under controlled-rate thermal analysis (CRTA) conditions it was possible to resolve the closely overlapping decomposition stages and to distinguish between adsorbed and bonded reagent. Three types of bonded reagent could be identified. The loosely bonded reagent amounting to 0.20 mol hydrazine-hydrate per mol inner surface hydroxyl is connected to the internal and external surfaces of the expanded mineral and is present as a space filler between the sheets of the delaminated mineral. The strongly bonded (intercalated) hydrazine-hydrate is connected to the kaolinite inner surface OH groups by the formation of hydrogen bonds. Based on the thermoanalytical results two different types of bonded reagent could be distinguished in the complex. Type 1 reagent (approx. 0.06 mol hydrazine-hydrate/mol inner surface OH) is liberated between 77 and 103°C. Type 2 reagent is lost between 103 and 227°C, corresponding to a quantity of 0.36 mol hydrazine/mol inner surface OH. When heating the complex to 77°C under CRTA conditions a new reflection appears in the XRD pattern with a d-value of 9.6 Å, in addition to the 10.2 Ĺ reflection. This new reflection disappears in contact with moist air and the complex re-expands to the original d-value of 10.2 Å in a few h. The appearance of the 9.6 Å reflection is interpreted as the expansion of kaolinite with hydrazine alone, while the 10.2 Å one is due to expansion with hydrazine-hydrate. FTIR (DRIFT) spectroscopic results showed that the treated mineral after intercalation/deintercalation and heat treatment to 300°C is slightly more ordered than the original (untreated) clay.