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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
481

A Feasibility Study of Model-Based Natural Ventilation Control in a Midrise Student Dormitory Building

Gross, Steven James 01 January 2011 (has links)
Past research has shown that natural ventilation can be used to satisfy upwards of 98% of the yearly cooling demand when utilized in the appropriate climate zone. Yet widespread implementation of natural ventilation has been limited in practice. This delay in market adoption is mainly due to lack of effective and reliable control. Historically, control of natural ventilation was left to the occupant (i.e. they are responsible for opening and closing their windows) because occupants are more readily satisfied when given control of the indoor environment. This strategy has been shown to be effective during summer months, but can lead to both over and under ventilation, as well as the associated unnecessary energy waste during the winter months. This research presents the development and evaluation of a model-based control algorithm for natural ventilation. The proposed controller is designed to modulate the operable windows based on ambient temperature, wind speed, wind direction, solar radiation, indoor temperature and other building characteristics to ensure adequate ventilation and thermal comfort throughout the year without the use of mechanical ventilation and cooling systems. A midrise student dormitory building, located in Portland OR, has been used to demonstrate the performance of the proposed controller. Simulation results show that the model-based controller is able to reduce under-ventilated hours to 6.2% of the summer season (June - September) and 2.5% of the winter (October - May) while preventing over-heating during 99% of the year. In addition, the model-based-controller reduces the yearly energy cost by 33% when compared to a conventional heat pump system. As a proactive control, model-based control has been used in a wide range of building control applications. This research serves as proof-of-concept that it can be used to control operable windows to provide adequate ventilation year-round without significantly affecting thermal comfort. The resulting control algorithm significantly improves the reliability of natural ventilation design and could lead to a wider adoption of natural ventilation in appropriate climate zones.
482

Experimental study of an intermittent ventilation system in high occupancy spaces

Kabanshi, Alan January 2017 (has links)
Spaces with high occupancy density like classrooms are challenging to ventilate and use a lot of energy to maintain comfort. Usually, a compromise is made between low energy use and good Indoor Environmental Quality (IEQ), of which poor IEQ has consequences for occupants’ health, productivity and comfort. Alternative strategies that incorporate elevated air speeds can reduce cooling energy demand and provide occupant’s comfort and productivity at higher operative temperatures. A ventilation strategy, Intermittent Air Jet Strategy (IAJS), which optimizes controlled intermittent airflow and creates non-uniform airflow and non-isothermal conditions, critical for sedentary operations at elevated temperatures, is proposed herein. The primary aim of the work was to investigate the potential of IAJS as a ventilation system in high occupancy spaces. Ventilation parameters such as air distribution, thermal comfort and indoor air quality are evaluated and the system is compared with a traditional system, specifically, mixing ventilation (MV). A 3-part research process was used: (1) Technical (objective) evaluation of IAJS in-comparison to MV and displacement ventilation (DV) systems. (2) An occupant response study to IAJS. (3) Estimation of the cooling effect under IAJS and its implications on energy use. All studies were conducted in controlled chambers. The results show that while MV and DV creates steady airflow conditions, IAJS has  cyclic airflow profiles which results in a sinusoidal temperature profile around occupants. Air distribution capability of IAJS is similar to MV, both having a generic local air quality index in the occupied zone. On the other hand, the systems overall air change rate was higher than a MV. Thermal comfort results suggest that IAJS generates comfortable thermal climate at higher operative temperatures compared to MV. Occupant responses to IAJS show an improved thermal sensation, air quality perception and acceptability of indoor environment at higher temperatures as compared to MV. A comparative study to estimate the cooling effect of IAJS shows that upper HVAC setpoint can be increased from 2.3 – 4.5 oC for a neutral thermal sensation compared to a MV. This implies a substantial energy saving potential on the ventilation system. In general, IAJS showed a potential for use as a ventilation system in classrooms while promising energy savings. / Lokaler där många människor vistas, som t.ex. klassrum, är ofta svåra att ventilera. Att upprätthålla en bra termisk komfort kräver en hög energianvändning. Vanligtvis blir det en kompromiss mellan låg energianvändning och bra kvalitet på inomhusmiljön (IEQ). Dålig IEQ får konsekvenser för människors hälsa, produktivitet och komfort. Alternativa ventilationsstrategier, som använder förhöjda lufthastigheter, kan minska kylbehovet och därmed energianvändningen. I denna avhandling utvärderas en ny ventilationsstrategi, Intermittenta luftstrålar (IAJS), där korta perioder med hög lufthastighet genererar en svalkande effekt, när rummets temperatur upplevs som för hög. Det primära syftet med arbetet var att undersöka potentialen hos IAJS som ett ventilationssystem för klassrum, där den termiska lasten ofta är hög. Strategin jämförs mot traditionella ventilationsprinciper som omblandande ventilation (MV) och deplacerande ventilation (DV). Parametrar som luftdistributionsindex, termisk komfort, luftkvalitet och energibesparing har utvärderats. Alla studier utfördes i klimatkammare. Resultaten visar att medan MV och DV skapar konstanta luftflödesförhållanden genererar IAJS cykliska hastighetsprofiler samt en sinusformad temperaturvariation i vistelsezonen. IAJS klarar att bibehålla ett bra termiskt klimat vid högre operativa temperaturer jämfört med MV. I en jämförelse med ett traditionellt HVAC-system visar beräkningar  att dess börvärde kan höjas från 2.3 till 4.5 °C med bibehållen termisk komfort. Detta indikerar en avsevärd energibesparingspotential vid användande av IAJS.
483

Návrh zařízení pro měření a hodnocení tepelného stavu prostředí / Device Proposal for Measurement and Evaluation of Environmental Thermal State

Janečka, Jan January 2012 (has links)
The thesis deals with evaluation of the environmental thermal state in closed rooms with people inside the room. The achievement of thermal comfort is related to thermal balance of human body. People are producing heat during their work, which has to be carried away from the body to surrounding area by radiation, convection, conduction, respiration and evaporation. The intensity of heat removal is influenced by environmental parameters, especially by air temperature, mean radiant temperature, air velocity and humidity. Personal factors as energy expenditure of human body and clothing resistance are influencing the intensity of heat removal as well. People are able to influence the thermal comfort by their behaviour in given environment, appropriate clothing and regulation of basic environmental parameters. CSN EN ISO 7730 standard states that environmental parameters should be estimated or measured. The operative temperature is than evaluated from collected data. This operative temperature is defined as the temperature of black enclosed area where the human body will be by convection and radiation sharing the same amount of heat as in real inconsistent environment. Nowadays on the market there is no cheap solution for sensor which is able to evaluate the operating temperature and could be used in buildings. There are a lot of professional sensors which have very high accuracy, but are very expensive. Therefore are mainly used only for research or for single and exceptional measurement of environmental thermal state in rooms. The thesis is therefore focused on proposal of suitable (compact) operative temperature sensor assembled according to valid regulations and standards. Emphasis is placed mainly on the sensor price together with guarantee of sufficient accuracy. The proposed sensor is providing information to control system which is than able to adjust the parameters of environment using appropriate way based on relevant requirements. Here is some space for energy savings due to possible continuous measurement and evaluation of environmental thermal state in different rooms. Therefore, during continuous measurement no unnecessary rooms overheating in winter as well as unreasonable cooling in summer should occur. This research and solution is than reflected in reduction of energy consumption used for building operation and subsequently reduction of the pollutants production. This issue is being watched with increasing interest. Another advantage is that whole system is able to work autonomously without human intervention. People no longer have to continuously adjust air temperature because the control system is able to evaluate the most appropriate adjustments based on objective data obtained from the sensor. The thesis includes subsequent verification of proposed sensor as well as the definition of sensor technical parameters including analysis of measurement uncertainties.
484

Uma São Paulo para o futuro: a produção de infraestruturas intersticiais a partir de parâmetros morfológicos, ambientais e sociais / A São Paulo for the future: the production of interstitial infrastructures based on morphological, environmental and social parameters

Pizarro, Eduardo Pimentel 26 March 2019 (has links)
A cidade de São Paulo é planejada, projetada, construída e apropriada a partir da lógica dos \"edifícios\", em detrimento de interstícios urbanos e suas potencialidades latentes. É lançada a hipótese de que a cidade, se produzida a partir de infraestruturas intersticiais embasadas por parâmetros morfológicos, ambientais e sociais, resulta em ambientes urbanos de maior qualidade para as pessoas. O objetivo da tese é, portanto, avaliar interstícios urbanos típicos da cidade existente e, a partir disso, desenvolver, analiticamente, e aplicar, propositivamente, ferramentas e parâmetros de planejamento e desenho urbano para a construção de efetivas infraestruturas intersticiais a requalificarem a cidade, com foco em territórios com potencial de transformação urbana. O método é empírico, analítico e especulativo, articulando Trabalho de Campo, Trabalho Analítico e Trabalho Propositivo, embasados teoricamente. Enfim, a contrapelo da legislação e prática vigentes, e a partir da aplicação dos parâmetros morfológico-ambientais-sociais propostos pela tese, são especulados futuros alternativos à cidade de São Paulo, legitimando e comprovando o papel infraestrutural de interstícios urbanos na requalificação da cidade. / The city of Sao Paulo is planned, designed, built and used from the perspective of \"buildings\" to the detritment of the urban void and its latent potentialities. It is hypothesized that the city, if produced from interstitial infrastructures based on morphological, environmental and social parameters, results in higher quality urban environments for people. The aim of the thesis is therefore to evaluate typical urban interstices selected in the existing city and to evolve, analytically, and to apply, prospectively, innovative tools and parameters for urban planning and design, seeking the construction of effective interstitial infrastructures to requalify the city, with a focus on territories with potential for urban transformation. The method is empirical, analytical and speculative in the way that articulates Fieldwork, Analytical Work and Prospective Work, theoretically based. Ultimately, against the prevailing urban regulation and practice, and from the application of the morphologicalenvironmental-social parameters proposed by the thesis, alternative futures are speculated to the city of São Paulo, legitimating and proving the infrastructural role of urban interstices in the requalification of the city.
485

Optical and thermal performance of complex fenestration systems in the context of building information modelling / Performances optiques et thermiques des systèmes de fenestration complexes dans le contexte du BIM

Boudhaim, Marouane 26 September 2018 (has links)
L'efficacité énergétique du bâtiment occupe une place importante dans les projets de construction. La façade, intermédiaire entre l'environnement et l'intérieur, joue un rôle clé pour déterminer les performances énergétiques du bâtiment. Les systèmes de fenestration complexes sont généralement utilisés pour améliorer son efficacité. L'étude des performances de la façade inclut généralement la consommation d'énergie, l'éclairage naturel et les aspects de confort visuel et thermique. Les efforts récents s'orientent vers l'utilisation de modèles intelligents tels que le Building Information Modeling. CFS pourraient être facilement comparées dans la phase de conception du bâtiment afin d'optimiser ses performances. Nous présentons une méthodologie pour transformer le modèle architectural du BIM en modèle énergétique ainsi que des modèles optique et thermique du CFS compatibles avec le BIM. Ces modèles sont validés par une comparaison avec des données expérimentales et les normes actuelles. / The energy efficiency of the building occupies an important place in construction projects. The facade plays a key role in determining the performance of the building. Complex fenestration systems (CFS) are therefore generally used to improve its efficiency. The facade's performance evaluation usually includes energy consumption, natural lighting, visual and thermal comfort aspects in order to choose the optimal CFS. Recent efforts have focused on using rich models such as Building Information Modeling (BIM). These models provide an opportunity for automation and cost savings. Several CFS models could easily be compared to optimize the building's performance. In this thesis, we present a methodology to transform the architectural model of the BIM into a Building Energy Model compatible with several simulation software. We also present optical and thermal models compatible with BIM. These models are validated by comparison with experimental data and current standards.
486

Conforto térmico e eficiência energética em hotéis econômicos / Thermal comfort and energy efficiency in Budget Hotels

Buoro, Anarrita Bueno 17 March 2008 (has links)
Este trabalho busca avaliar a eficiência energética e o conforto, em ambiente climatizado artificialmente, dos Hotéis Econômicos de redes internacionais em São Paulo. A avaliação levada a cabo concentrou-se nas unidades habitacionais (UH) desses hotéis, principal produto oferecido por eles, possuidoras de sistema de ar condicionado (SAC), apesar das condições climáticas e das características do uso não determinarem essa necessidade. Com base nos levantamentos sobre as características dos Hotéis Econômicos, foi escolhido um hotel de uma rede internacional em São Paulo como estudo de caso. Nele, avaliou-se o desempenho térmico por meio de medições de temperatura e umidade relativa do ar em duas UH, durante cinco dias. As características físicas desse hotel foram utilizadas como modelo-base para as simulações computacionais realizadas no software TAS NG (2005). A partir dos resultados obtidos nas medições, definiram-se os critérios que seriam utilizados nas variações do modelo paramétrico, resultando em um total de sete cenários, com diferentes características como: vidros, cortina interna, taxa de ventilação e período determinado para ventilação. Levando-se em conta as condições climáticas da cidade de São Paulo e as características físicas e ocupacionais dos apartamentos, verificou-se que é possível obter conforto térmico sem o uso de SAC. Nessas condições, utilizou-se como critério de avaliação o modelo adaptativo da Norma ASHRAE 55 (2004). Os dados dos dias mais representativos de verão e inverno forma utilizados na análise dos ganhos de calor. Foi também avaliado, para o período de um ano, o consumo de energia elétrica do SAC, para resfriamento e aquecimento. Os resultados obtidos auxiliaram na proposição de recomendações de projeto para essa tipologia, buscando soluções que aprimoram o aproveitamento das condições naturais favoráveis para a obtenção de conforto térmico, possibilitando a redução do consumo de energia decorrente do SAC nestes ambientes. Para ilustrar algumas recomendações foram feitos estudos preliminares para as UH e para o pavimento tipo, considerando a integração do SAC com soluções de projeto de arquitetura que favoreçam o melhor desempenho energético de Hotéis Econômicos ou de qualquer categoria. / This work aims to evaluate the energy efficiency and comfort level, in airconditioned environments of budget hotels, from international chains, in São Paulo, Brazil. The evaluation was directed to the apartments which are the hotels main product featuring air conditioning, even though the climate conditions and usage profile dont determine its need. One hotel from an international chain was chosen as a case study based on research of budget hotels main features. The hotel had its thermal performance evaluated through air temperature and humidity measurements, in two apartments, for five days. Its physical characteristics were inputted into the TAS NG (2005) software as a base model for simulations. The measurements results defined the criteria used in the parametric model, resulting in a total of seven scenarios with different characteristics such as glass, internal shades, ventilating rates and period. Considering São Paulos climatic conditions, the physical and occupational characteristics of the apartments, it was verified that it is possible to reach thermal comfort without the use of air conditioning. The evaluating criterion used in these conditions was an adaptive model from the ASHRAE 55 (2004) Norm. Data from the most representative days of summer and winter were used in the analysis. There was also an evaluation of the energy consumption of the air condition- ing system, used for cooling and heating purposes, for a period of one year. The results favored the proposal for project recommendations for this typology, seeking solutions to improve the capacity to harness the favorable natural conditions to obtain thermal comfort, allowing for energy consumption reduction due to air conditioning. To illustrate the recommendations some preliminary studies were prepared for the apartments and pavement type, considering the integration of the air conditioning system with architectural design solutions that favor a better energy performance of budget hotels or of any other category.
487

Avaliação da qualidade ambiental interior de um edifício climatizado artificialmente com ênfase na análise do conforto térmico / Evaluation of indoor environmental quality of an artificially conditioned building, focusing on thermal comfort analysis

Silva, Ana Flávia Silveira 25 November 2010 (has links)
Ocupantes de ambientes internos climatizados artificialmente estão expostos contínua e prolongadamente a condições ambientais muitas vezes desfavoráveis à execução de suas atividades e à manutenção da saúde. O objetivo desta pesquisa foi avaliar alguns parâmetros de qualidade do ar interior e de conforto térmico de um edifício climatizado artificialmente e relacioná-los à utilização de sistema de condicionamento de ar com distribuição pelo piso em ambientes que não são caracterizados como escritórios abertos. Considerando que o edifício estudado apresenta usos distintos de seus pavimentos, optou-se pela avaliação de dois deles, um pavimento cujo layout é de salas de aula e outro de escritório semi-aberto. Os parâmetros foram analisados em três momentos distintos. O primeiro se caracteriza por três ciclos semestrais de medições de temperatura, umidade relativa e velocidade do ar, concentração de aerossóis, dióxido de carbono e fungos. A segunda etapa consiste em uma campanha única de medições, com duração de quatro dias, permitindo a realização de perfis de temperatura e umidade relativa, avaliação das velocidades do ar em pontos de desconforto e cálculo dos índices de conforto térmico PMV (Predicted Mean Vote) e PPD (Predicted Percentage of Dissatisfied). Em um terceiro e último momento, aplicou-se o questionário de qualidade ambiental interior aos ocupantes de ambos os pavimentos. Resultados obtidos nos ciclos permitiram identificar concentrações de fungos e dióxido de carbono acima dos limites indicados. Os perfis de temperatura revelaram a predominância das mesmas abaixo do recomendado. O cálculo dos índices PMV e PPD apontaram para um cenário de maior conforto térmico nos ambientes estudados com temperatura operativa igual a 24 graus Celsius. Os resultados dos questionários corroboraram as medições de temperatura, indicando a prevalência das sensações térmicas relacionadas ao frio entre os ocupantes do edifício, em especial aqueles do sexo feminino. Ficou evidenciado que o conforto térmico nos ambientes pesquisados é um fator perturbador das atividades exercidas em ambos os pavimentos. Houve um grande número de relatos de ocupantes com sintomas típicos da Síndrome dos Edifícios Doentes (SED), sugerindo que medidas relativas à qualidade ambiental devem ser tomadas em prol da saúde, bem estar e produtividade dos ocupantes do edifício. Concluiu-se que a operação e manutenção do sistema de condicionamento de ar com insuflamento pelo piso em ambientes distintos de escritórios abertos são mais complexas e, por isso, dificultam o alcance de uma qualidade ambiental interior satisfatória. / Occupants of artificially conditioned indoor spaces are continuously and lengthily exposed to environmental conditions mostly adverse to their activities performance and health maintenance. The purpose of this research was to evaluate some indoor air quality and thermal comfort parameters of an artificially conditioned building, and relate them to the employment of underfloor air conditioning system in spaces that differ from open-plan office spaces. Considering the studied building presents different activities on each of its floors it was necessary to choose two of them, one characterized by classrooms layout and the other by a semi open-plan office layout. The on-site data collection took place in three different steps. Step one was distinguished by three six-month cycles of air temperature, relative humidity and air velocity measurements, and fungi, particulate matter and carbon dioxide concentrations. The second step consisted of a four-day single campaign of measurements, when air temperature and relative humidity profiles were carried out, air velocity was quantified in complaining areas, and the Predicted Mean Vote (PMV) and Predicted Percentage of Dissatisfied (PPD) thermal comfort indexes were determined. During the third and last step, indoor environmental quality questionnaire surveys were distributed to the occupants of both studied floors. Data analysis and assessment originated from the cycles identified exceeding fungi and carbon dioxide concentrations. Temperature profiles indicated their prevalence below the recommended range. PMV and PPD indexes determination pointed to a scenery of best thermal environmental conditions for the researched spaces, with an operative temperature of 24 Celsius degrees. The results of the questionnaire surveys supported the air temperature measurements, showing supremacy of cold related thermal sensations among the occupants, especially those of female gender. It was evident that the thermal comfort of the studied environments is a disturbing factor for the activities practiced on both floors. There was a great number of occupants reporting Sick Building Syndrome (SBS) typical symptoms, what suggested actions related to indoor environmental quality should be taken in order to provide the desired health, welfare and productivity for the building occupants. It was conclusive that the operation and maintenance of underfloor air conditioned systems in indoor environments unlike open-plan offices are more complex and therefore make it harder to reach an acceptable indoor environmental quality.
488

Arborização na cidade de Campinas/SP- percepção e conforto / Street trees in the city of Campinas/SP - comfort and perception

Dobbert, Léa Yamaguchi 13 February 2015 (has links)
A influência benéfica de áreas verdes no conforto humano em áreas urbanas tem sido reconhecida por estudos de diferentes campos do conhecimento. Áreas verdes e arborização bem planejada constituem importantes recursos para melhorar a qualidade do ambiente ao promover bem-estar físico e mental aos seus usuários. Avaliar o grau de interferência proporcionado pela arborização no conforto térmico e bem-estar da população foi o objetivo principal do presente estudo. O índice de floresta urbana (IFU) avaliou a interferência da quantidade de cobertura arbórea em quatro áreas da cidade de Campinas/SP/Brasil em relação às condições de conforto térmico. Para tanto, foram utilizados índices de avaliação de conforto térmico (PMV Predicted Mean Vote e PET- Physiologically Equivalent Temperature) obtidos por meio do modelo Ray Man Pro.Questionários aplicados aos usuários das áreas de estudo possibilitaram verificar se os resultados obtidos por meio dos índices PMV e PET correspondiam à real sensação de conforto térmico relatada pelos entrevistados.Simulações com o uso do programa ENVI-met v. 3.1 foram realizadas a fim de observar as interferências microclimáticas causadas pela inserção de vegetação no meio urbano. A percepção do usuário das áreas de estudo em relação à arborização urbana também foi identificada por meio de questionários. Essa pesquisa permitirá no futuro, a partir dos resultados levantados, construir um instrumento para ser incorporado no plano diretor de arborização urbana, possibilitando urbanistas e profissionais, que atuam de forma direta ou indireta no planejamento das cidades, inspecionar e analisar o conforto térmico e a qualidade de vida no meio urbano, tendo em vista a valorização e adequação da arborização viária em seus projetos. / The benefits of green urban area on human comfort have been recognized by studies performed in different knowledge fields. Green areas and urban forest planning are important tool to improve the quality of the urban environment by promoting physical and mental wellbeing to its users. The main goal of the present study is to assess the interference promoted by green areas in the welfare and thermal comfort of the urban population. The Urban Forest Index (IFU) evaluated the interference of the amount of trees in four areas of the city of Campinas, in the state of São Paulo, Brazil in relation to the conditions for thermal comfort. For this purpose, comfort indices have been used for evaluating thermal comfort (PMV-Predicted Mean Vote and PET-Physiologically Equivalent Temperature), obtained by the RayMan model. Questionnaires applied to the users on these study areas aimed to verify if the results of PET and PMV indices corresponded to the thermal sensation by respondents. Simulations using the ENVI-met program v 3.1 were conducted to observe the interference on microclimate due to the presence of vegetation in the urban environment. Questionnaires were also used to assess the perception of users on urban street trees. In the future, results obtained in this study will allow the building of an instrument, which could be included in the urban forest master plan. As a result, urban planners and other professionals who work directly or indirectly in the planning of cities will be able to inspect and evaluate the thermal comfort and the welfare of their citizens, considering the recovery and suitability of urban street trees in their projects.
489

Regression models to assess the thermal performance of Brazilian low-cost houses: consideration of natural ventilation / Modelos de regressão para avaliação do desempenho térmico de habitações de interesse social brasileiras: consideração da ventilação natural

Rossi, Michele Marta 28 January 2016 (has links)
Building performance simulations [BPS] tools are important in all the design stages, mainly in the early ones. However, some barriers such as time, resources and expertise do not contribute to their implementation in architecture offices. This research aimed to develop regression models (meta-models) to assess the thermal discomfort in a Brazilian low-cost house [LCH] during early design. They predicted the degree-hours of discomfort by heat and/or by cold as function of the design parameters changes for three Brazilian cities: Curitiba/PR, São Paulo/SP, and Manaus/AM. This work focused on using the meta-models to evaluate the impact of the parameters related to natural ventilation strategies on thermal performance in LCH. The analyzed Brazilian LCH consisted in a naturally ventilated representative unit developed based on the collected data. The most influential parameters in thermal performance, namely as key design parameters, were building orientation, shading devices positions and sizes, thermal material properties of the walls and roof constructive systems as well as window-to-wall ratios (WWR) and effective window ventilation areas (EWVA). The methodology was divided into: (a) collecting projects of Brazilian LCH, and based on that a base model that was able to represent them was proposed, (b) defining the key design parameters and their ranges, in order to compose the design space to be considered, (c) simulating thermal performance using EnergyPlus coupled with a Monte Carlo framework to randomly sample the design space considered, (d) using the greater part of the simulation results to develop the meta-models, (e)using the remaining portion to validate them, and (f) applying the meta-models in a simple design configuration in order to test their potential as a support design tool. Overall, the meta-models showed R2 values higher than 0.95 for all climates. Except for the regression models to predict discomfort by heat for Curitiba (R2 =0.61) and São Paulo (R2 =0.74). In their application, the models showed consistent predictions for WWR variations, but unexpected patterns for EWVA. / Simulações do desempenho de edificações são ferramentas importantes em todo processo de desenvolvimento do projeto, especialmente nas etapas iniciais. No entanto, barreiras como tempo, custo e conhecimento especializado impedem a implementação de tais ferramentas nos escritórios de arquitetura. A presente pesquisa se propôs a desenvolver modelos de regressão (meta-modelos) para avaliar o desconforto térmico em uma habitação de interesse social [HIS] brasileira. Estes meta - modelos predizem os graus-hora de desconforto por calor ou por frio em função de alterações nos parâmetros de projeto para três cidades brasileiras: Curitiba/PR, São Paulo/SP e Manaus/AM. O foco deste trabalho é o uso dos meta-modelos para avaliar o impacto de parâmetros relacionados com estratégias de ventilação natural no conforto térmico em HIS. A HIS brasileira analisada consistiu em uma unidade representativa, naturalmente ventilada e desenvolvida baseada em dados coletados. Os parâmetros que mais influenciam o conforto térmico, nomeados parâmetroschave de projeto foram: orientação da edificação, posição e tamanho das proteções solares, propriedades térmicas dos sistemas construtivos das paredes e do telhado, assim como, áreas de janela nas fachadas e áreas efetiva de abertura. A metodologia foi dividida em: (a) coleta de projetos de HIS brasileiras que embasaram a proposição de um modelobase que os representassem, (b) definição dos parâmetros chave de projeto e suas faixas de variação, a fim de compor o universo de projeto a ser explorado, (c) simulações térmicas usando o EnergyPlus acoplado com uma ferramenta de Monte Carlo para variar randomicamente o universo de projeto considerado, (d) uso da maior parte dos resultados das simulações para o desenvolvimento dos meta-modelos,(e) uso da porção remanescente para a validação dos meta-modelos e (f) aplicação dos meta-modelos em uma simples configuração de projeto, visando testar o seu potencial como ferramenta de suporte de projeto. De modo geral, os meta-modelos apresentaram R2 superiores a 0,95 para todos os climas, exceto os meta-modelos para predizer desconforto por calor para Curitiba (R2 =0,61) e São Paulo (R2 =0,74). Na fase de aplicação, os modelos mostraram predições consistentes para variações na área de janela na fachada, mas incoerências para variações nas áreas efetiva de abertura.
490

Forma e arborização em cânions urbanos: tendências de estresse térmico para o pedestre em cenários futuros de Umuarama/PR / Form and afforestation in urban canyons: trends of pedestrian thermal stress in future scenarios of Umuarama-PR

Lima, Diana Carla Rodrigues 07 November 2017 (has links)
A evolução da forma urbana adequada ao seu contexto climático é determinante para a qualidade ambiental dos espaços abertos. Porém, em diversas cidades o crescimento urbano acelerado ocorre quase sem nenhum controle ou planejamento. Esse descontrole é apontado como causa de prejuízos ao ambiente natural e construído, entre eles, o desconforto térmico nos espaços abertos. No Brasil, o Plano Diretor é o instrumento dos governos municipais que regula o desenho urbano; no entanto, nota-se um distanciamento entre os aspectos ambientais e a formulação dos planos e leis municipais. A cidade de Umuarama, no noroeste do Paraná, tem assistido a um intenso crescimento urbano, porém, ainda há na cidade uma flexibilidade para a gestão da forma urbana. Atualmente, está em fase de aprovação o novo Plano Diretor Municipal, que propõe a ampliação da área urbana onde é permitida a verticalização, e o Plano Municipal de Arborização Urbana, que busca promover o controle e o aumento da arborização urbana. Face ao proposto pelos planos, essa pesquisa tem como objetivo principal verificar as tendências de estresse térmico no nível do pedestre em futuros cenários de cânions urbanos na área central de Umuarama. O cânion urbano, referente ao espaço conformado pela via e edifícios adjacentes, foi adotado como objeto de estudo por se constituir na menor unidade microclimática urbana e no principal espaço aberto de uso público. A metodologia aplicada se baseia em levantamento de dados em campo; simulação de diferentes cenários de configuração urbana através de modelagem microclimática com o programa ENVI-met, para situação de verão e inverno; e aplicação do índice de conforto térmico Temperatura Fisiológica Equivalente - PET. Os resultados demonstraram que diferentes combinações dos parâmetros da forma urbana, especificamente, da geometria do cânion urbano e arborização presente no seu interior, resultam em tendências diversas de estresse térmico para o pedestre. Os maiores níveis de estresse térmico no nível do pedestre foram observados no período diurno, em situação de verão; esses níveis tendem a ser menores com o aumento da relação H/W e da arborização no interior dos cânions urbanos. Além disso, verificou-se menor amplitude térmica em cânions com maior cobertura verde. Em cânions urbanos com orientação N-S, o aumento da cobertura verde no interior do cânion urbano foi mais importante para a redução do índice PET do que em cânions com orientação L-O; por outro lado, nesses cânions com orientação L-O, o aumento da relação H/W foi mais representativo para minimizar o PET. A compreensão do comportamento do PET nos diversos cenários demonstrou que novas configurações da forma urbana são compatíveis com a qualidade ambiental dos espaços abertos desde que aplicadas estratégias do desenho urbano climaticamente orientado. Ao final, com base nos resultados, foram traçadas recomendações relacionadas à geometria e cobertura verde das vias urbanas a favor do conforto térmico dos usuários desses espaços. / The appropriate evolution of urban form for your climate context is determinant to open spaces environmental quality. However, it is observed that in several cities the accelerated urban growth occurs almost without any control or planning. This lack of control is pointed as the cause of damage to the built and natural environment, including the thermal discomfort in open spaces. In Brazil, the Master Plan is the instrument of the municipal governments that regulates the urban design; however, there is a gap between environmental aspects and the formulation of plans and municipal laws. The city of Umuarama in the Northwest of Paraná, has seen an intense urban growth, however, there is still a flexibility to the management of urban form. Actually, the new municipal Master Plan is in the aproval phase, it proposes the expansion of the urban area where verticalization is permitted, and the municipal urban afforestation plan, that seeks to promote and control the increase of urban afforestation. In view of proposed plans, this research has as main objective to verify the trends of thermal stress in the pedestrian\'s level in future scenarios of urban canyons in the central area of Umuarama. The urban canyon, referring to the space formed by the via and adjacent buildings, was adopted as object of study because it is the smallest unit microclimatic and the main urban open space for public use. The methodology applied is based on in loco data collection; simulation of different scenarios of urban setting through microclimatic modeling with the ENVI-met program, for summer and winter condition; and application of thermal comfort index Physiological Equivalent Temperature - PET. The results showed that different combinations of the urban form parameters, specifically, the urban canyon geometry and afforestation present in your interior, result in various trends of thermal stress to the pedestrian. The highest levels of thermal stress in the pedestrian level were observed during the day, in summer; these levels trend to be smaller with increasing H/W ratio and afforestation in urban canyons. In addition, there has been less thermal amplitude in canyons with more green coverage. In urban canyons with N-S orientation, increasing the green coverage inside the urban canyon was more important for the reduction of the PET index than in the canyons with L-O orientation; on the other hand, in those canyons with L-O orientation, increasing the H/W ratio was more representative to minimize the PET. Understanding PET behavior in different scenarios demonstrated that new urban form settings are compatible with the open spaces environmental quality since applied urban design strategies climatically guided. In the end, based on the results, were delineated recommendations related urban streets geometry and green coverage in favour of thermal comfort of the users of these spaces.

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