913 resultados para Building energy-efficiency


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The Economic Commission for Latin America and the Caribbean (ECLAC), in collaboration with the Caribbean Development Bank, convened the meeting “Promoting Energy Efficiency in the Caribbean” on 13–14 May 2010 at its Subregional Headquarters for the Caribbean, in Port of Spain, Trinidad and Tobago. The meeting had its genesis in the convening of consultations in 2009 with Latin American and Caribbean countries, members of the Latin American Energy Agency, and resulted in a report calling for greater awareness of energy efficiency among Caribbean countries, so as to provide the impetus of the development of a regional energy efficiency strategy. An evaluation form was distributed towards the end of the meeting, providing the participants with the opportunity to assess the quality and success of different aspects of the meeting (the logistics of the meeting, venue, the organization and the technical aspects of the meeting). ECLAC has acknowledged the importance of receiving feedback from its meeting participants to tailor future meetings to the specific needs of its clients.

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Este trabalho apresenta as estratégias e convenções adotadas, assim como os módulos em funcionamento, do sistema de monitoração desenvolvido e que está sendo implantado na edificação do Grupo de Estudos e Desenvolvimento de Alternativas Energéticas (GEDAE), denominada de Laboratório de Energias Renováveis e Eficiência Energética, com o objetivo de monitorar principalmente as variáveis climáticas e aquelas referentes à geração e ao consumo da edificação. Com esse sistema, objetiva-se a criação de uma base de dados unificada, sincronizada e de fácil acesso aos usuários da edificação, bem como a criação de ferramentas personalizáveis pelos usuários para a análise dos dados coletados e com possibilidade de expansão para a inserção de novas grandezas de interesse, facilitando, desta forma, estudos a respeito do desempenho da edificação quanto ao seu consumo de energia elétrica, seus sistemas de produção de eletricidade e condições de conforto ambiental no interior da edificação, além de permitir a análise das estratégias adotadas na edificação. Espera-se que os dados coletados possam também exercer a função de divulgação de estratégias de eficiência energética em edificações por meio da publicação de alguns resultados na internet em uma página dinâmica para tal fim.

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Um dos grandes entraves para o desenvolvimento econômico mundial é a crescente demanda por energia e consequente aumento da utilização de recursos naturais para provê-la. Países em desenvolvimento, como o Brasil, apresentaram progressivo consumo de energia per capita nos últimos anos. Embora a sua maioria seja proveniente de usinas hidrelétricas (fontes não poluidoras) sua construção causa grande impacto ambiental. De todo o percentual energético gerado, as edificações são responsáveis pelo consumo de aproximadamente 40% e este percentual tende a aumentar mediante o crescimento da construção civil no país. Diante da problemática, o combate ao desperdício, a racionalização e o uso sustentável da energia consumida pelas edificações estão diretamente ligados à redução do impacto ao meio ambiente, postergando a necessidade de aumento da matriz energética nacional. Neste contexto é criado o Regulamento Técnico da Qualidade do Nível de Eficiência Energética de Edifícios Comerciais, de Serviço e Públicos (RTQ-C). Este trabalho consiste em uma aplicação crítica do RTQ-C utilizando a metodologia prescritiva, tendo como enfoque aspectos relativos a sua aplicabilidade e avaliação de conforto térmico e lumínico, tendo como premissa que o alto desempenho energético da edificação só é plenamente alcançado quando são garantidas condições satisfatórias de conforto ambiental aos usuários. Para tanto foi necessária uma etapa minuciosa de levantamento de dados e medições “in loco” de temperatura do ar, temperatura radiante, iluminância e umidade relativa em dois ambientes (laboratório de conforto e sala de aula 2) do edifício do Centro de Excelência em Eficiência Energética da Amazônia - CEAMAZON, subsidiando a utilização da metodologia proposta por Fanger (PMV e PPD), e verificação dos níveis de iluminância propostos pela NBR 5413. Como resultado a edificação apresentou bom desempenho, mas a não observância dos prérequisitos a classificou com nível “C”. A avaliação de conforto indicou que aproximadamente 23% dos usuários não estavam em conforto térmico e que a ventilação natural poderá ser utilizada como estratégia bioclimática para adequação. As medições de iluminância indicaram que apenas a sala de aula 2 possuia potencial de aproveitamento de iluminação natural no período da medição. Concluiu-se que, apesar de sua importância, o RTQ-C deve passar ainda por um processo de adaptação por parte da sociedade e dos profissionais envolvidos na certificação energética de edificações e que durante esse período modificações poderão ser incorporadas contribuindo para torná-lo um instrumento efetivamente válido para a garantia da eficiência energética das edificações do país.

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A presente dissertação de mestrado estuda o desempenho térmico de materiais de fachada em uma edificação verticalizada na cidade de Belém – PA, Brasil. Este trabalho tem por objetivo contribuir com estudo do desempenho térmico e eficiência de materiais utilizados na envoltória das edificações residenciais verticalizadas, entre os elementos opacos, foram selecionados dois tipos de materiais, bastante utilizados atualmente na construção civil, a pintura e revestimento cerâmico. Também estuda-se a influência da altura da edificação sobre seu desempenho térmico e eficiência energética. O estudo foi desenvolvido com o uso de modelagem em código computacional no programa EnergyPlus que permite avaliar o desempenho térmico da edificação, a influência da altura na eficiência energética da mesma. Compara-se o desempenho térmico dos dois materiais selecionados, verificou-se que o prédio com revestimento cerâmico apresentou a temperatura interna média anual de 0,42 º C acima da temperatura referente ao prédio pintado, portanto com menor desempenho térmico. A influência da altura do pavimento não produziu uma variação significativa na temperatura interna, pois com seu acréscimo, ocorreu pequena diminuição da temperatura interna, com gradiente térmico da ordem de -0,07ºC /m em decorrência da velocidade do vento que é maior quando mais alto é o pavimento. Considera-se também para este estudo a ventilação natural como estratégia passiva para a edificação em estudo, que segundo a análise da Carta Bioclimática de Givoni contribuiria positivamente para a condição de temperatura interna e umidade do ar, e consequentemente do usuário.

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To identify the critical success factors in the adoption of energy efficiency actions in Brazilian hospitals and describe their behaviour are the objectives of this paper. In order to achieve these goals, a literature review was performed on green management and energy efficiency. This was the basis to define the questions of the interview script applied to two hospitals located in the state of Sao Paulo, Brazil. The interview script application was complemented by secondary data and direct observation. The results showed that: a) the studied hospitals are embracing environmental management actions more often and, whenever possible, energy efficiency actions are taken as well; and b) in the cases analysed top management support, commitment with the environment, green process design and employee empowerment were some of the most relevant critical success factors to the accomplishment of energy efficiency actions. These findings may be of interest to emerging countries, including BRICS (Brazil, Russia, India, China and South Africa).

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Energy efficiency has gained significant importance in recent years, mainly due to cyclical climatic conditions and current supply of natural resources. The present work deals with the procedures and requirements necessary to evaluate a building to a level of efficiency corresponding to your project and the actual implemented. To perform this analysis, we adopted the technical regulation efficiency prepared by Procel along with other agencies of the sector. The Regulation aims to create a model for the technical evaluation of the efficiency of buildings, popularize and expand the theme specification of conditions drawn up today. The building analyzed in this study was the library of UNESP, Guaratinguetá. Still, after the completion of the final efficiency analysis, are presented proposals for intervention that can improve and enhance the present situation of the building. The interventions are based on many technical factors and local conditions of climate and supply of resource. The issue of sustainability was explained in order to serve as a tool to expand the options available to upgrade a building in front of their impact on the environment

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The discussions about the energy rationalization are gaining more and more space on the everyday of engineers and other professionals in the field of energy. A greater focus is being tied to commercial buildings, because they are one of the biggest responsible for the high energetic expenditure according to the National Energetic Balance, especially by the use of air conditioners for the people’s thermal comfort. Such finding made INMETRO to develop a building labeling procedure through th National Program of Electric Energy Conservation in Buildings; by means of this systematic, the built areas are classified by levels that go from A(the best) to E(the worst), taking into account envelopment, illumination system and air conditioning. A bonus process based on water rationalization, use of renewable energy sources, cogeneration systems or technical innovations, allows the classification to be changed up to one level. A study made exactly on a commercial building, the building of Foundation for Technological and Scientific Development located inside of the College of Engineering of Guaratinguetá, sought to identify technical/economic alternatives for the building certification and appealed to the bonus based on water rationalization. The present study is based on analysis of deploying a cogeneration system formed by internal combustion engine and an absorption refrigeration system as bonus alternative, so that the costs are analyzed regarding energy consumption and use of the motor. With the calculations and results, the viability of the building to receive a bonus from INMETRO through its National Program for Energy Conservation in Buildings is studied and concluded from this study whether or not you can get a better level of energy efficiency for the building in question... (Complete abstract click electronic access below)

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This paper presents a study on the labeling Procel Build, an action plan for energy efficiency in buildings which aims to build the foundations necessary to rationalize energy consumption in buildings in Brazil (PROCEL, 2009a, p. 5), ie Procel builds aims to ensure the construction of the building that has a low energy expenditure, but still provide a comfortable environment. In this research, it is also shown how the labels are obtained, which may be general or partial. The reader will find further explanation of the three aspects of a building, and they Envelopment, Lighting system and Air Conditioning System Finally, we present the advantages and challenges of system builds procel, showing the need for greater investment and disclosure of elements that contribute to the implementation of sustainable buildings in Brazil

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The environmental problems generated by construction activity have been widely discussed in Brazil, which has begun to incorporate sustainable building techniques in your ventures. Based on these facts, this work focused on addressing the main characteristics of a sustainable building project. Among them are water conservation, energy efficiency in buildings, managing a construction site with little environmental impact and reuse of materials and construction elements. This work, after the presentation of the main characteristics of a sustainable building project, shows a case study about the implementation of environmental certification LEED Gold level in a large building, located in São Paulo - SP, Brazil. With that, we want to produce a research document about the topic of sustainable buildings

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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The term Ambient Intelligence (AmI) refers to a vision on the future of the information society where smart, electronic environment are sensitive and responsive to the presence of people and their activities (Context awareness). In an ambient intelligence world, devices work in concert to support people in carrying out their everyday life activities, tasks and rituals in an easy, natural way using information and intelligence that is hidden in the network connecting these devices. This promotes the creation of pervasive environments improving the quality of life of the occupants and enhancing the human experience. AmI stems from the convergence of three key technologies: ubiquitous computing, ubiquitous communication and natural interfaces. Ambient intelligent systems are heterogeneous and require an excellent cooperation between several hardware/software technologies and disciplines, including signal processing, networking and protocols, embedded systems, information management, and distributed algorithms. Since a large amount of fixed and mobile sensors embedded is deployed into the environment, the Wireless Sensor Networks is one of the most relevant enabling technologies for AmI. WSN are complex systems made up of a number of sensor nodes which can be deployed in a target area to sense physical phenomena and communicate with other nodes and base stations. These simple devices typically embed a low power computational unit (microcontrollers, FPGAs etc.), a wireless communication unit, one or more sensors and a some form of energy supply (either batteries or energy scavenger modules). WNS promises of revolutionizing the interactions between the real physical worlds and human beings. Low-cost, low-computational power, low energy consumption and small size are characteristics that must be taken into consideration when designing and dealing with WSNs. To fully exploit the potential of distributed sensing approaches, a set of challengesmust be addressed. Sensor nodes are inherently resource-constrained systems with very low power consumption and small size requirements which enables than to reduce the interference on the physical phenomena sensed and to allow easy and low-cost deployment. They have limited processing speed,storage capacity and communication bandwidth that must be efficiently used to increase the degree of local ”understanding” of the observed phenomena. A particular case of sensor nodes are video sensors. This topic holds strong interest for a wide range of contexts such as military, security, robotics and most recently consumer applications. Vision sensors are extremely effective for medium to long-range sensing because vision provides rich information to human operators. However, image sensors generate a huge amount of data, whichmust be heavily processed before it is transmitted due to the scarce bandwidth capability of radio interfaces. In particular, in video-surveillance, it has been shown that source-side compression is mandatory due to limited bandwidth and delay constraints. Moreover, there is an ample opportunity for performing higher-level processing functions, such as object recognition that has the potential to drastically reduce the required bandwidth (e.g. by transmitting compressed images only when something ‘interesting‘ is detected). The energy cost of image processing must however be carefully minimized. Imaging could play and plays an important role in sensing devices for ambient intelligence. Computer vision can for instance be used for recognising persons and objects and recognising behaviour such as illness and rioting. Having a wireless camera as a camera mote opens the way for distributed scene analysis. More eyes see more than one and a camera system that can observe a scene from multiple directions would be able to overcome occlusion problems and could describe objects in their true 3D appearance. In real-time, these approaches are a recently opened field of research. In this thesis we pay attention to the realities of hardware/software technologies and the design needed to realize systems for distributed monitoring, attempting to propose solutions on open issues and filling the gap between AmI scenarios and hardware reality. The physical implementation of an individual wireless node is constrained by three important metrics which are outlined below. Despite that the design of the sensor network and its sensor nodes is strictly application dependent, a number of constraints should almost always be considered. Among them: • Small form factor to reduce nodes intrusiveness. • Low power consumption to reduce battery size and to extend nodes lifetime. • Low cost for a widespread diffusion. These limitations typically result in the adoption of low power, low cost devices such as low powermicrocontrollers with few kilobytes of RAMand tenth of kilobytes of program memory with whomonly simple data processing algorithms can be implemented. However the overall computational power of the WNS can be very large since the network presents a high degree of parallelism that can be exploited through the adoption of ad-hoc techniques. Furthermore through the fusion of information from the dense mesh of sensors even complex phenomena can be monitored. In this dissertation we present our results in building several AmI applications suitable for a WSN implementation. The work can be divided into two main areas:Low Power Video Sensor Node and Video Processing Alghoritm and Multimodal Surveillance . Low Power Video Sensor Nodes and Video Processing Alghoritms In comparison to scalar sensors, such as temperature, pressure, humidity, velocity, and acceleration sensors, vision sensors generate much higher bandwidth data due to the two-dimensional nature of their pixel array. We have tackled all the constraints listed above and have proposed solutions to overcome the current WSNlimits for Video sensor node. We have designed and developed wireless video sensor nodes focusing on the small size and the flexibility of reuse in different applications. The video nodes target a different design point: the portability (on-board power supply, wireless communication), a scanty power budget (500mW),while still providing a prominent level of intelligence, namely sophisticated classification algorithmand high level of reconfigurability. We developed two different video sensor node: The device architecture of the first one is based on a low-cost low-power FPGA+microcontroller system-on-chip. The second one is based on ARM9 processor. Both systems designed within the above mentioned power envelope could operate in a continuous fashion with Li-Polymer battery pack and solar panel. Novel low power low cost video sensor nodes which, in contrast to sensors that just watch the world, are capable of comprehending the perceived information in order to interpret it locally, are presented. Featuring such intelligence, these nodes would be able to cope with such tasks as recognition of unattended bags in airports, persons carrying potentially dangerous objects, etc.,which normally require a human operator. Vision algorithms for object detection, acquisition like human detection with Support Vector Machine (SVM) classification and abandoned/removed object detection are implemented, described and illustrated on real world data. Multimodal surveillance: In several setup the use of wired video cameras may not be possible. For this reason building an energy efficient wireless vision network for monitoring and surveillance is one of the major efforts in the sensor network community. Energy efficiency for wireless smart camera networks is one of the major efforts in distributed monitoring and surveillance community. For this reason, building an energy efficient wireless vision network for monitoring and surveillance is one of the major efforts in the sensor network community. The Pyroelectric Infra-Red (PIR) sensors have been used to extend the lifetime of a solar-powered video sensor node by providing an energy level dependent trigger to the video camera and the wireless module. Such approach has shown to be able to extend node lifetime and possibly result in continuous operation of the node.Being low-cost, passive (thus low-power) and presenting a limited form factor, PIR sensors are well suited for WSN applications. Moreover techniques to have aggressive power management policies are essential for achieving long-termoperating on standalone distributed cameras needed to improve the power consumption. We have used an adaptive controller like Model Predictive Control (MPC) to help the system to improve the performances outperforming naive power management policies.

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Wireless sensor networks can transform our buildings in smart environments, improving comfort, energy efficiency and safety. Today however, wireless sensor networks are not considered reliable enough for being deployed on large scale. In this thesis, we study the main failure causes for wireless sensor networks, the existing solutions to improve reliability and investigate the possibility to implement self-diagnosis through power consumption measurements on the sensor nodes. Especially, we focus our interest on faults that generate in-range errors: those are wrong readings but belong to the range of the sensor and can therefore be missed by external observers. Using a wireless sensor network deployed in the R\&D building of NXP at the High Tech Campus of Eindhoven, we performed a power consumption characterization of the Wireless Autonomous Sensor (WAS), and studied through some experiments the effect that faults have in the power consumption of the sensor.

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La ricerca ha per oggetto la messa a punto e applicazione di un approccio metaprogettuale finalizzato alla definizione di criteri di qualità architettonica e paesaggistica nella progettazione di aziende vitivinicole medio-piccole, che effettuano la trasformazione della materia prima, prevalentemente di propria produzione. L’analisi della filiera vitivinicola, della letteratura scientifica, della normativa di settore, di esempi di “architetture del vino eccellenti” hanno esplicitato come prevalentemente vengano indagate cantine industriali ed aspetti connessi con l'innovazione tecnologica delle attrezzature. Soluzioni costruttive e tecnologiche finalizzate alla qualità architettonica ed ambientale, attuali dinamiche riguardanti il turismo enogastronomico, nuove funzionalità aziendali, problematiche legate alla sostenibilità dell’intervento risultano ancora poco esplorate, specialmente con riferimento a piccole e medie aziende vitivinicole. Assunto a riferimento il territorio ed il sistema costruito del Nuovo Circondario Imolese (areale rappresentativo per vocazione ed espressione produttiva del comparto vitivinicolo emiliano-romagnolo) è stato identificato un campione di aziende con produzioni annue non superiori ai 5000 hl. Le analisi svolte sul campione hanno permesso di determinare: modalità di aggregazione funzionale degli spazi costruiti, relazioni esistenti con il paesaggio, aspetti distributivi e materico-costruttivi, dimensioni di massima dei locali funzionali alla produzione. Il caso studio relativo alla riqualificazione di un’azienda rappresentativa del comparto è stato utilizzato per la messa a punto e sperimentazione di criteri di progettazione guidati da valutazioni relative alle prestazioni energetiche, alla qualità architettonica e alla sostenibilità ambientale, economica e paesaggistica. L'analisi costi-benefici (pur non considerando le ricadute positive in termini di benessere degli occupanti ed il guadagno della collettività in termini di danni collegati all’inquinamento che vengono evitati in architetture progettate per garantire qualità ambientale interna ed efficienza energetica) ha esplicitato il ritorno in pochi anni dell’investimento proposto, nonostante gli ancora elevati costi di materiali di qualità e dei componenti per il corretto controllo climatico delle costruzioni.