811 resultados para adaptive thermal comfort models


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Green façades constitute constructive technologies with a positive influence on sustainability in cities and several urban climate parameters such as thermal comfort, air quality and water management. According to the current research, the implementation of urban greenery contributes to increase the cooling effect and mitigate the urban heat island (UHI) phenomenon. This paper focuses on the role of vegetation in improving the urban environment of Madrid (Spain). The simulation results show that green walls could be more effective in urban morphologies with narrow streets. During overheated periods, the streets with green walls have a higher relative humidity in the surrounding areas than those with trees. The air temperature is found to be a little lower. The reduction of wind speed means a positive effect on urban hygrothermal comfort. Therefore, green walls could be taken into account as suitable tools to modify the outdoor thermal environment in cities with an extreme Continental Mediterranean climate.

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Este trabajo presenta un estudio de campo sobre confort térmico basado en la concepción adaptativa, para la determinación de las temperaturas y rangos de confort térmico de sujetos habituados a espacios enfriados mecánicamente en viviendas con aire acondicionado (AA) en el clima cálido y húmedo de la ciudad de Maracaibo (Venezuela) y las consecuentes implicaciones energéticas que tiene la satisfacción de esa demanda de confortabilidad en el sector residencial de la ciudad. Para la estimación de la temperatura de confort (Tc) y el rango de temperaturas de confort se aplican diferentes metodologías de análisis estadístico, las cuales son comparadas con las respectivas calculadas con el índice PMV; se analizan también otros aspectos asociados a la confortabilidad térmica, tales como las respuestas en las diferentes escalas de valoración de la confortabilidad, las preferencias, experiencias y expectativas térmicas de los sujetos. Las implicaciones energéticas se determinan en base al consumo de la energía eléctrica residencial debido exclusivamente a la variación de la Tc, entre la obtenida inicialmente en espacios naturalmente ventilados (NV) en Maracaibo (Bravo y Gonzalez 2001a) y la determinada ahora en espacios con AA. Para ello, se utiliza una metodología que es el resultado de la modificación parcial de la propuesta por Yamtraipat et al (2006). Entre los resultados y conclusiones derivadas de este estudio se encuentra que el 57 % de las personas prefieren las mismas condiciones confortables experimentadas en los ambientes con AA y solamente un 30 % prefieren experimentar ambientes ligeramente fríos y ligeramente calientes. Mientras tanto, las estimaciones de la Tc, y el respectivo rango, varían de acuerdo a la metodología empleada. Con la convencional metodología adaptativa, la Tc se estima en 25 °C en un amplio rango de 6 °C, entre 22 °C y 28 °C; mientras que con la metodología denominada “método de los promedios de los intervalos de las sensaciones térmicas” (Gómez-Azpeitia et al, 2007), la misma Tc se estima en 24 °C, en un rango estrecho de 22,5 °C a 25,5 °C y en un rango ampliado de 21 °C a 27 °C (amplitud 6 °C), donde se encuentran las tres cuartas partes de las personas del estudio. Ambas Tc son muy próximas a la temperatura operativa optima de 24,5 °C (rango de 23 °C a 26 °C) establecida por las normas internacionales ISO 7730:1994 y ASHRAE 55:1992 para el verano en climas templados. Sin embargo, la Tc estimada con los valores de PMV resulta ser superior en 1 °C y 2 °C a la Tc estimada con la metodología adaptativa (25 °C) y con el metodo de los promedios de los intervalos (24 °C), respectivamente. Con la metodología aplicada y la muestra del estudio se estima que de haberse registrado una Tbsint igual o próxima a 28 C (equivalente a la Tc en espacios NV en Maracaibo) en todos los espacios medidos (con Tbsint entre 19 C y 29 C), el ahorro total de la energía anual seria de 1.648,1 GWh en un ano respecto al consumo de AA en el año 2007 (2.522,3 GWh en un ano), mientras que el ahorro de energía asumiendo Tbsint de 24 C y de 25 C, resultan en 651,9 GWh en un ano y 425,7 GWh en un ano, respectivamente. Esto significa respectivos consumos adiciones de energía eléctrica equivalentes al 60,4 % y 74,2 %. Finalmente, los hábitos o conductas adoptadas por las personas de este estudio, sumado a las predominantes manifestaciones de confortabilidad en ambientes enfriados mecánicamente, redundan en mayores adaptaciones a condiciones de frio y exigencias de temperaturas de confort más bajas, con su consecuente consumo energético para proveerlas. ABSTRACT This investigation presents a study on thermal comfort following the adaptive approach for the determination of the thermal comfort temperatures and ranges of subjects accustomed to mechanically refrigerated spaces in dwellings with air conditioning (AA) systems in the hot and humid weather of the city of Maracaibo (Venezuela) and the ensuing energy use implications it has on the satisfaction of such demand of comfortability in the residential sector of the city. For the estimation of the comfort temperature (Tc) and the range of comfort temperatures different statistical analysis methodologies were used, which are then compared to the respective values calculated with the PMV index, also discusses other aspects related with thermal comfortability were analyzed, such as the responses on the different scales of perception of thermal comfortability, preferences, experiences and expectations of the analyzed subjects. The energetic implications are determined through the residential energy consumption related exclusively with the variation of the Tc between the originally calculated for naturally ventilated (NV) spaces in Maracaibo (Bravo y Gonzalez 2001a) and the one calculated on the present study with AA. For this, a new methodology was developed by partially modifying the Yamtraipat et al (2006) proposal. Among the results and conclusions of this study are that 57 % of the studied subjects prefer the same comfortable conditions experienced on AA environments and only a 30 % prefer to experience slightly cooler or warmer environments. Also, estimations of the Tc and its respective range vary according to the used methodology. With the conventional adaptive methodology, the Tc is estimated in 25 °C with a wide range of 6 °C, between 22 °C and 28 °C, while using the “thermal sensation intervals averages method” (Gomez-Azpeitia et al, 2007) the Tc is estimated in 24 °C on a narrow range between 22.5 °C and 25.5 °C and a widened range of 21 °C to 27 °C (6 °C in amplitude), a range where . of the studied subjects are located. Both Tc are very close to the optimum operation temperature of 24.5 °C (with a range between 23 °C and 26 °C) established on the ISO 7730:1994 and ASHRAE 55:1992 international norms for the summer on warm climates. However, the estimated Tc with the PMV indexes results to be 1 °C and 2 °C above the Tc estimated with the adaptive methodology (25 °C) and the thermal sensation intervals averages method (24 °C), respectively. With the applied methodology and this study sample, its estimated that if a Tbsint equal or close to 28 °C (equivalent to the Tc in NV spaces in Maracaibo) was registered in all measured spaces (with Tbsint between 19 °C and 29 °C) the total yearly energy savings would be of 1.648,1 GWh in a year with respect to the AA consumption in the year 2007 (2.522.3 GWh in a year), while the energy savings assuming a Tbinst of 24 °C and 25 °C result in 651.9 GWh and 425.7 Gwh in a year, respectively. This means that the respective additional electrical energy consumption amount to 60.4 % and 74.2 %, respectively. Finally, the habits or behaviors adopted by the subjects analyzed on this study, added to the predominant manifestations of comfortability in mechanically refrigerated environments result in greater adaptations to colder conditions and lower thermal comfort temperature demands, with the consequential increase in power consumption to meet them.

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During the last years, an increasing interest has been developed so as to address the problem of fuel poverty which is already affecting a huge number of European citizens. In 2013, the European Parliament has claimed to the Commission and State Members through several resolutions, the legislative development of policies in order to tackle energy vulnerability of households. In 2000 the UK Government, through the Warm Homes and Energy Conservation Act, established that a person could be regarded as fuel poor if he is a member of a household that cannot get warmth at a reasonable cost. Nevertheless, in order to establish the incidence of fuel poverty among Spanish households, it must be understood which should be the adequate thresholds for indoor temperatures. The research here presented proposes new indoor temperature thresholds for fuel poor households based on adaptive comfort models.

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El presente trabajo, trata del ahorro de energía en la edificación y en el urbanismo. Las premisas en este caso, son un contexto normativo europeo y nacional muy exigentes y encaminados de manera decidida hacia edificios cada vez más eficientes y económicos. Se centra el estudio en las decisiones iniciales que se adoptan sobre las condiciones de ocupación de la parcela urbana, las tipologías edificatorias más adecuadas, su morfología y escala y las consecuencias que tienen para el comportamiento energético final, tanto en términos objetivos como normativos. Se trata de cuantificar que suponen estas decisiones en términos de ahorro energético. Todo el análisis se realiza para un contexto climático concreto, el de la ciudad de Madrid. Para los análisis de las diferentes condiciones de implantación objeto del estudio, se han empleado unas herramientas informáticas singulares. Se trata de los programas de evaluación de la demanda y certificación energética de edificios, que el gobierno español pone a disposición de los usuarios de manera gratuita. Estas, son aplicaciones pensadas para la escala del edificio y/o parte de él, pero que con la metodología y simplificaciones que en el trabajo se detallan, pueden ser empleadas en la escala media de intervención urbana, tanto en nueva implantación como en rehabilitación. Hay que tener en cuenta que son estas aplicaciones las que se utilizarán en la mayoría de los casos como instrumento de evaluación y calificación del comportamiento energético de cada una de las unidades. Las tipologías objeto del estudio son: - Vivienda unifamiliar: aislada, pareada y adosada en hilera. - Bloque abierto - Bloque en H - Bloque en cruz - Torre - Manzana cerrada El contenido principal del trabajo se centra en el análisis individual de cada tipología y de su agrupación teórica sobre lo que podíamos llamar "unidad urbana", una manzana tipo de 10.000 m2, 1 ha. Se opta por esta unidad por tratarse de una superficie urbana lo suficientemente amplia para caracterizar la agrupación de las diferentes tipologías estudiadas y por adaptarse a las capacidades de las herramientas informáticas que se han utilizado. Se han analizado diferentes opciones tipológicas de ocupación, manteniendo constantes en todas las soluciones estudiadas, los siguientes parámetros: • el clima (Madrid), • la edificabilidad (en todas menos una en la que el modelo no permite alcanzar la edificabilidad de referencia), • la pureza formal del modelo, evitando los juegos compositivos de retranqueos y salientes de la envolvente que distorsionen el comportamiento de la volumetría primaria, • las soluciones constructivas de la envolvente y particiones interiores de los edificios, • las proporciones de huecos en la envolvente, • las soluciones de sus carpinterías y vidrios • y todas las condiciones operacionales que aplica el programa de simulación. Esta tesis, es un estudio analítico y evaluado, del comportamiento de cada uno de los tipos, su forma y posicionamiento en el espacio. Cada uno de los modelos se simula de manera individual y agrupados, con el fin de conseguir colmatar la edificabilidad de referencia sobre la parcela urbana de 1 ha. Todos los resultados se estudian de forma independiente y los resultados se expresan en diferentes tablas y un resumen en fichas individuales por tipos. La conclusión principal del trabajo es que la tipología elegida como contenedor residencial urbano determina en su elección acertada la primera medida de ahorro energético y reducción de emisiones cuantificables en más del 50% entre las tipologías más favorables y las más desfavorables. Una segunda parte del trabajo de investigación, consiste en la aplicación de esta metodología de simulación y empleando las mismas herramientas, en el estudio de casos reales en la comunidad de Madrid (principalmente en la ciudad de Madrid). El objetivo es validar el procedimiento y dichas herramientas, también para el caso de evaluación de tejidos urbanos consolidados. Como caso singular de estudio de rehabilitación urbana, se analizan las intervenciones de rehabilitación partiendo de criterios acústicos y las oportunidades que plantearía la inclusión de criterios térmicos aprovechando la sinergia entre ambas demandas, la de confort acústico y térmico. ABSTRACT This PhD work is about saving energy in buildings and urban planning. The premises in this case are a very demanding European and national policy, aimed decisively towards efficient and economic buildings. The study focuses on the initial decisions taken on the conditions of occupation of urban land, the most suitable building types, their morphology and scale and the implications for the final energy performance, always considering policy objectives. This essay tries to quantify how important this decisions are in energy savings terms. All analysis are performed for a particular climatic context, the city of Madrid. For the analysis of different implantation conditions under study, we have used a unique software tool. This software, a free tool available online, quantifies demand assessment and energy certification of buildings. It is designed for building scale and / or part of it. With the methodology and simplifications detailed in this paper, the software can be used in medium scale urban intervention. There are different types under study such as, isolated house, semi-detached, terraces row, open block, h block, cross block, tower, etc. The main content of the work focuses on the individual analysis of each type and its theoretical group, named urban unit group. This unit is chosen because it is an urban area large enough to characterize the grouping of the different types studied. It is also possible to simulate with the software tools. Different options of typological occupation have been analyzed taking in consideration the next parameters: climate, floor area, model formal purity, building envelope solutions and interior partitions of buildings, the proportions of voids in the facades. This thesis is an analytical and evaluated study of the behavior of each types, form and position in space. Each of the models is simulated individually and grouped, in order to get the reference buildable urban plot of 1 ha. All results are studied independently and the results are expressed in different tables and a summary in individual files by type. The main conclusion of the study is that the type chosen as urban residential container you choose determines the first step in successful energy savings and quantifiable reduction of emissions by more than 50% in the most favorable and the most unfavorable types. A second part of the research, is the application of this methodology and simulation using the same tools in the study of real cases in the community of Madrid (mainly in the city of Madrid). The aim is to validate the procedure and such tools, also for the case of evaluation of consolidated urban fabric. As a unique case study of urban renewal, rehabilitation interventions based on acoustic criteria and opportunities arise thermal criteria including leveraging the synergy between the two demands, acoustic and thermal comfort are analyzed.

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The farm’s rural dwellings of creation from the Seridó Potiguar microregion, built in the nineteenth century, became a reference by its vernacular character, i.e. these buildings, besides having recognized relevance to the identity of the region, they are adapted to the conditions of the place in many aspects (economic, cultural, construction, physical, et.) and consist in protective spaces in relation to hostile characteristics of Seridó’s climate. Considering the above premise, the following question arises: What characteristics of the nineteenth century Seridó Potiguar’s cattle farms are crucial for them to be a protective space in relation to the semiarid climate? In order to answer the question, this research aim to identify which particularities of the Seridó’s farmhouses that contribute to adaptability in these buildings to semiarid climate, as protection environments; and contribute to the stock valuation of the architectural heritage concerned. Therefore, procedures were adopted divided into two stages. Were first identified the recurring characteristics in the studied buildings, through typological study performed from existing inventories (DINIZ, 2008; FEIJÓ, 2002; IPHAN, 2012). To define the type it worked up with the concept that merges Durand’s analytical typology that identifies the similarities and differences to classify buildings, having the character of historical survey and architectural documentation, with the definition proposed by Argan (1963) that the type is not defined a priory, but the deduction from a number of illustrative cases which have formal and functional similarity with each other. Then worked up in a sample of five different types with each other, defined by the possibility of access to the interior of the houses, proximity to other copies, good state of conservation and preservation. The contemplated farms were: Pitombeiras, Agenus e Garrotes in Acari’s town, and the municipality of Caicó, Palma and Penedo. The second stage consists of the architectural survey, photographic record, digital three-dimensional modeling (aiming to expand the existing documentation and registration) and thermal monitoring over approximately a representative day in five farmhouses, relating the thermal performance of the houses with their individual characteristics. The selected variables for analysis monitoring are based on the thermal comfort adaptive model (SPAGNOLO and DE DEAR, 2003 apud NEGREIROS, 2010). The characteristics of the houses were analyzed as meeting the passive thermal conditioning strategies recommended by NBR 15220 (ABNT, 2005), for the bioclimatic zone 7 where the municipalities of Caicó and Acari are located. The house’s analysis of the operating temperatures revealed that 90% of the times of day the environments are within the comfort range. The farmhouses, which had a higher degree of compliance with recommended bioclimatic strategies, had the best thermal performance. In environments (usually the kitchen and rooms with low ceiling heights, exposed to west radiation) which still had discomfort hours, the thermal comfort can be reached with air movement approximately 1,0 m/s.

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The farm’s rural dwellings of creation from the Seridó Potiguar microregion, built in the nineteenth century, became a reference by its vernacular character, i.e. these buildings, besides having recognized relevance to the identity of the region, they are adapted to the conditions of the place in many aspects (economic, cultural, construction, physical, et.) and consist in protective spaces in relation to hostile characteristics of Seridó’s climate. Considering the above premise, the following question arises: What characteristics of the nineteenth century Seridó Potiguar’s cattle farms are crucial for them to be a protective space in relation to the semiarid climate? In order to answer the question, this research aim to identify which particularities of the Seridó’s farmhouses that contribute to adaptability in these buildings to semiarid climate, as protection environments; and contribute to the stock valuation of the architectural heritage concerned. Therefore, procedures were adopted divided into two stages. Were first identified the recurring characteristics in the studied buildings, through typological study performed from existing inventories (DINIZ, 2008; FEIJÓ, 2002; IPHAN, 2012). To define the type it worked up with the concept that merges Durand’s analytical typology that identifies the similarities and differences to classify buildings, having the character of historical survey and architectural documentation, with the definition proposed by Argan (1963) that the type is not defined a priory, but the deduction from a number of illustrative cases which have formal and functional similarity with each other. Then worked up in a sample of five different types with each other, defined by the possibility of access to the interior of the houses, proximity to other copies, good state of conservation and preservation. The contemplated farms were: Pitombeiras, Agenus e Garrotes in Acari’s town, and the municipality of Caicó, Palma and Penedo. The second stage consists of the architectural survey, photographic record, digital three-dimensional modeling (aiming to expand the existing documentation and registration) and thermal monitoring over approximately a representative day in five farmhouses, relating the thermal performance of the houses with their individual characteristics. The selected variables for analysis monitoring are based on the thermal comfort adaptive model (SPAGNOLO and DE DEAR, 2003 apud NEGREIROS, 2010). The characteristics of the houses were analyzed as meeting the passive thermal conditioning strategies recommended by NBR 15220 (ABNT, 2005), for the bioclimatic zone 7 where the municipalities of Caicó and Acari are located. The house’s analysis of the operating temperatures revealed that 90% of the times of day the environments are within the comfort range. The farmhouses, which had a higher degree of compliance with recommended bioclimatic strategies, had the best thermal performance. In environments (usually the kitchen and rooms with low ceiling heights, exposed to west radiation) which still had discomfort hours, the thermal comfort can be reached with air movement approximately 1,0 m/s.

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the work towards increased energy efficiency. In order to plan and perform effective energy renovation of the buildings, it is necessary to have adequate information on the current status of the buildings in terms of architectural features and energy needs. Unfortunately, the official statistics do not include all of the needed information for the whole building stock.   This paper aims to fill the gaps in the statistics by gathering data from studies, projects and national energy agencies, and by calibrating TRNSYS models against the existing data to complete missing energy demand data, for countries with similar climate, through simulation. The survey was limited to residential and office buildings in the EU member states (before July 2013). This work was carried out as part of the EU FP7 project iNSPiRe.   The building stock survey revealed over 70% of the residential and office floor area is concentrated in the six most populated countries. The total energy consumption in the residential sector is 14 times that of the office sector. In the residential sector, single family houses represent 60% of the heated floor area, albeit with different share in the different countries, indicating that retrofit solutions cannot be focused only on multi-family houses.   The simulation results indicate that residential buildings in central and southern European countries are not always heated to 20 °C, but are kept at a lower temperature during at least part of the day. Improving the energy performance of these houses through renovation could allow the occupants to increase the room temperature and improve their thermal comfort, even though the potential for energy savings would then be reduced.

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Nowadays, evaluation methods to measure thermal performance of buildings have been developed in order to improve thermal comfort in buildings and reduce the use of energy with active cooling and heating systems. However, in developed countries, the criteria used in rating systems to asses the thermal and energy performance of buildings have demonstrated some limitations when applied to naturally ventilated building in tropical climates. The present research has as its main objective to propose a method to evaluate the thermal performance of low-rise residential buildings in warm humid climates, through computational simulation. The method was developed in order to conceive a suitable rating system for the athermal performance assessment of such buildings using as criteria the indoor air temperature and a thermal comfort adaptive model. The research made use of the software VisualDOE 4.1 in two simulations runs of a base case modeled for two basic types of occupancies: living room and bedroom. In the first simulation run, sensitive analyses were made to identify the variables with the higher impact over the cases´ thermal performance. Besides that, the results also allowed the formulation of design recommendations to warm humid climates toward an improvement on the thermal performance of residential building in similar situations. The results of the second simulation run was used to identify the named Thermal Performance Spectrum (TPS) of both occupancies types, which reflect the variations on the thermal performance considering the local climate, building typology, chosen construction material and studied occupancies. This analysis generates an index named IDTR Thermal Performance Resultant Index, which was configured as a thermal performance rating system. It correlates the thermal performance with the number of hours that the indoor air temperature was on each of the six thermal comfort bands pre-defined that received weights to measure the discomfort intensity. The use of this rating system showed to be appropriated when used in one of the simulated cases, presenting advantages in relation to other evaluation methods and becoming a tool for the understanding of building thermal behavior

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The present research concerns about outdoor s thermal comfort conditions in hot-humid climate cities, understanding that life quality is a result of the urban object s type built for the human being in an environment with specific climate and morphological characteristics. It is presented as object of study the correlation between the neighborhood Renascença II s microclimate in São Luis /MA-Brazil, hot-humid climate city, and its urban morphological changes. As well as the thermal comfort s satisfaction level of its outdoor users. The research has as general goal to diagnosis the way these transformations caused by the urbanization influence the Renascença II s microclimate, identifying critical spots of the studied area, in order to contribute with land use recommendations based on bioclimatic architecture concepts and supply bases to urban design decisions adequate to the São Luis climate. It is presented as theoretical bases the urban climate, its concepts and elements. After that, the thermal comfort conditioners and its prediction models of thermal comfort sensation in outdoor are presented. The predictive models are presented along with bioclimatic assessment methods. Finally the use of bioclimatic assessment as an effective tool to identify places that need changes or preservation in order to seek environment quality. The applied methodology was based on the studies of Katzschner (1997), complemented by Oliveira s (1988) and Bustos Romero s (2001) studies that suggest an analysis and evaluation of maps of topography, buildings floors, land use, green areas and land covering, in order to overlap their characteristics and identify climate variable s measurements points; then a quantitative analysis of the climate variables (air temperature and humidity, wind speed and direction) of the chosen points takes place. It was perceived that Renaissance II has no permanence areas as squares or parks, its outdoor has little vegetation and presets high land impermeability and built density levels. The majority of the people interviewed said that was comfortable in a range of air temperature between 27,28ºC and 30,71ºC. The elaboration of a neighborhood master plan is important, which defines strategies for improvement of the life quality of its inhabitants

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The assessment of building thermal performance is often carried out using HVAC energy consumption data, when available, or thermal comfort variables measurements, for free-running buildings. Both types of data can be determined by monitoring or computer simulation. The assessment based on thermal comfort variables is the most complex because it depends on the determination of the thermal comfort zone. For these reasons, this master thesis explores methods of building thermal performance assessment using variables of thermal comfort simulated by DesignBuilder software. The main objective is to contribute to the development of methods to support architectural decisions during the design process, and energy and sustainable rating systems. The research method consists on selecting thermal comfort methods, modeling them in electronic sheets with output charts developed to optimize the analyses, which are used to assess the simulation results of low cost house configurations. The house models consist in a base case, which are already built, and changes in thermal transmittance, absorptance, and shading. The simulation results are assessed using each thermal comfort method, to identify the sensitivity of them. The final results show the limitations of the methods, the importance of a method that considers thermal radiance and wind speed, and the contribution of the chart proposed

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The employment of flexibility in the design of façades makes them adaptable to adverse weather conditions, resulting in both minimization of environmental discomfort and improvement of energy efficiency. The present study highlights the potential of flexible façades as a resource to reduce rigidity and form repetition, which are usually employed in condominiums of standardized houses; as such, the work presented herein contributes to field of study of architectural projects strategies for adapting and integrating buildings within the local climate context. Two façade options were designed using as reference the bionics and the kinetics, as well as their applications to architectural constructions. This resulted in two lightweight and dynamic structures, which cater to constraints of comfort through combinations of movements, which control the impact of solar radiation and of cooling in the environment. The efficacy and technical functionality of the façades were tested with comfort analysis and graphic computation software, as well as with physical models. Thus, the current research contributes to the improvement of architectural solutions aimed at using passive energy strategies in order to offer both better quality for the users and for the sustainability of the planet

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Traditional air delivery to high-bay buildings involves ceiling level supply and return ducts that create an almost-uniform temperature in the space. Problems with this system include potential recirculation of supply air and higher-than-necessary return air temperatures. A new air delivery strategy was investigated that involves changing the height of conventional supply and return ducts to have control over thermal stratification in the space. A full-scale experiment using ten vertical temperature profiles was conducted in a manufacturing facility over one year. The experimental data was utilized to validated CFD and EnergyPlus models. CFD simulation results show that supplying air directly to the occupied zone increases stratification while holding thermal comfort constant during the cooling operation. The building energy simulation identified how return air temperature offset, set point offset, and stratification influence the building’s energy consumption. A utility bill analysis for cooling shows 28.8% HVAC energy savings while the building energy simulation shows 19.3 – 37.4% HVAC energy savings.

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Nowadays, evaluation methods to measure thermal performance of buildings have been developed in order to improve thermal comfort in buildings and reduce the use of energy with active cooling and heating systems. However, in developed countries, the criteria used in rating systems to asses the thermal and energy performance of buildings have demonstrated some limitations when applied to naturally ventilated building in tropical climates. The present research has as its main objective to propose a method to evaluate the thermal performance of low-rise residential buildings in warm humid climates, through computational simulation. The method was developed in order to conceive a suitable rating system for the athermal performance assessment of such buildings using as criteria the indoor air temperature and a thermal comfort adaptive model. The research made use of the software VisualDOE 4.1 in two simulations runs of a base case modeled for two basic types of occupancies: living room and bedroom. In the first simulation run, sensitive analyses were made to identify the variables with the higher impact over the cases´ thermal performance. Besides that, the results also allowed the formulation of design recommendations to warm humid climates toward an improvement on the thermal performance of residential building in similar situations. The results of the second simulation run was used to identify the named Thermal Performance Spectrum (TPS) of both occupancies types, which reflect the variations on the thermal performance considering the local climate, building typology, chosen construction material and studied occupancies. This analysis generates an index named IDTR Thermal Performance Resultant Index, which was configured as a thermal performance rating system. It correlates the thermal performance with the number of hours that the indoor air temperature was on each of the six thermal comfort bands pre-defined that received weights to measure the discomfort intensity. The use of this rating system showed to be appropriated when used in one of the simulated cases, presenting advantages in relation to other evaluation methods and becoming a tool for the understanding of building thermal behavior

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The present research concerns about outdoor s thermal comfort conditions in hot-humid climate cities, understanding that life quality is a result of the urban object s type built for the human being in an environment with specific climate and morphological characteristics. It is presented as object of study the correlation between the neighborhood Renascença II s microclimate in São Luis /MA-Brazil, hot-humid climate city, and its urban morphological changes. As well as the thermal comfort s satisfaction level of its outdoor users. The research has as general goal to diagnosis the way these transformations caused by the urbanization influence the Renascença II s microclimate, identifying critical spots of the studied area, in order to contribute with land use recommendations based on bioclimatic architecture concepts and supply bases to urban design decisions adequate to the São Luis climate. It is presented as theoretical bases the urban climate, its concepts and elements. After that, the thermal comfort conditioners and its prediction models of thermal comfort sensation in outdoor are presented. The predictive models are presented along with bioclimatic assessment methods. Finally the use of bioclimatic assessment as an effective tool to identify places that need changes or preservation in order to seek environment quality. The applied methodology was based on the studies of Katzschner (1997), complemented by Oliveira s (1988) and Bustos Romero s (2001) studies that suggest an analysis and evaluation of maps of topography, buildings floors, land use, green areas and land covering, in order to overlap their characteristics and identify climate variable s measurements points; then a quantitative analysis of the climate variables (air temperature and humidity, wind speed and direction) of the chosen points takes place. It was perceived that Renaissance II has no permanence areas as squares or parks, its outdoor has little vegetation and presets high land impermeability and built density levels. The majority of the people interviewed said that was comfortable in a range of air temperature between 27,28ºC and 30,71ºC. The elaboration of a neighborhood master plan is important, which defines strategies for improvement of the life quality of its inhabitants

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The assessment of building thermal performance is often carried out using HVAC energy consumption data, when available, or thermal comfort variables measurements, for free-running buildings. Both types of data can be determined by monitoring or computer simulation. The assessment based on thermal comfort variables is the most complex because it depends on the determination of the thermal comfort zone. For these reasons, this master thesis explores methods of building thermal performance assessment using variables of thermal comfort simulated by DesignBuilder software. The main objective is to contribute to the development of methods to support architectural decisions during the design process, and energy and sustainable rating systems. The research method consists on selecting thermal comfort methods, modeling them in electronic sheets with output charts developed to optimize the analyses, which are used to assess the simulation results of low cost house configurations. The house models consist in a base case, which are already built, and changes in thermal transmittance, absorptance, and shading. The simulation results are assessed using each thermal comfort method, to identify the sensitivity of them. The final results show the limitations of the methods, the importance of a method that considers thermal radiance and wind speed, and the contribution of the chart proposed