981 resultados para urban heritage


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O presente trabalho resultou de um estudo antropológico sobre o Museu Severina Paraíso da Silva, dedicado à história e às tradições do grupo de candomblé da nação Xambá, cujo diferencial é estar instalado dentro de uma casa de culto afro brasileiro, o Terreiro de Santa Bárbara Ylê Axé Oyá Meguê, em Olinda, Pernambuco, Brasil. Este é um exemplo de Museu que representa a memória de um grupo social minoritário, criado por seus membros, com o objetivo de preservar seu patrimônio étnico-cultural, o qual é utilizado como categoria política para obtenção de reconhecimento perante a sociedade. Foram analisadas, neste estudo, as inter-relações em torno do Museu, observando-se aspectos como sua criação pelos próprios membros; coleta e utilização dos objetos; público-alvo; espaço físico e objetos, em especial os que não perderam seu poder simbólico, embora expostos no Museu e, principalmente, as mensagens transmitidas para a sociedade. Tais aspectos são importantes fios condutores para entender a postura dos membros do grupo em relação à sociedade e à formação de suas autoconsciências individuais e coletivas, ou seja, como eles elaboram e interpretam a identidade como grupo através do Museu; e entender também a importância do Museu na construção da memória e preservação da identidade étnica do grupo Xambá e da cultura negra em Pernambuco. A questão principal, porém, foi verificar se o Memorial e o Museu, como espaços de preservação, criam em seus membros um sentimento de pertencimento. Para a pesquisa foram coletados dados bibliográficos, documentais, no site do terreiro, na cartilha do grupo, em vídeos, plantas, em entrevistas formais com os criadores do museu e informais com outros membros do grupo, mas principalmente através da observação participante nas visitas dirigidas ao Museu e nos toques. Durante a pesquisa verificou-se que uma parte do grupo se destaca pela busca de sua visibilidade como estratégia de reivindicação de direitos sociais. Busca esta que procura legitimar a tradição usando categorias como autenticidade e pureza e pela presença de pesquisadores e pessoas ilustres, além da afirmação da importância do Museu para a construção do patrimônio cultural do negro no Estado. Um ganho substancial nesta busca pela visibilidade foi a concessão do título de Quilombo Urbano, alguns anos após a criação do Museu, sugerindo que este contribuiu para o reconhecimento do local como espaço de preservação de práticas culturais de descendentes de africanos. Há outros elementos que representam vitórias, na luta pelo reconhecimento, ou seja, um empoderamento para o grupo, como o nome de Xambá, dado ao Terminal Integrado de Passageiros construído próximo ao terreiro dentro do perímetro do Quilombo. Além da visibilidade para o grupo, o Museu trouxe outros ganhos, ele cria uma coesão entre seus membros, que passam a se ver como um grupo, como uma nação.

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EXTRACT (SEE PDF FOR FULL ABSTRACT): The data of this paper differ from the Jones and Bradley papers [of 1982-1986] in that it represents an attempt to select thermal pollution free records rather than to include all available records. The specific long-term trends that this paper is trying to avoid are those illustrated by the heat islands of fast growing urban locations. One other major difference in this paper is that all of the records reported of this study are complete for the entire study period.

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Tailored sustainability assessment represents one approach to addressing sustainability issues on large-scale urban projects with varying geographical, social and political constraints and diverse incentives among stakeholders. This paper examines the value and limitations of this approach. Three case studies of tailored systems developed by the authors for three unique masterplanning projects are discussed in terms of: contextual sustainability drivers; nature and evolution of systems developed; outcomes of implementation; and overall value delivered. Analysis Leads to conclusions on the key features of effective tailored assessment, the value of tailored sustainability assessment from various perspectives (including client, designer, end-users and the environment), and the limitations of tailored assessment as a tool for comparative analysis between projects. Although systems considered here are specific to individual projects and developed commercially, the challenges and lessons learned are relevant to a range of sustainability assessment approaches developed under different conditions.

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BIPV (building integrated photovoltaics) has progressed in the past years and become an element to be considered in city planning. BIPV has significant influence on microclimate in urban environments and the performance of BIPV is also affected by urban climate. The thermal model and electrical performance model of ventilated BIPV are combined to predict PV temperature and PV power output in Tianjin, China. Then, by using dynamic building energy model, the building cooling load for installing BIPV is calculated. A multi-layer model AUSSSM of urban canopy layer is used to assess the effect of BIPV on the Urban Heat Island (UHI). The simulation results show that in comparison with the conventional roof, the total building cooling load with ventilation PV roof may be decreased by 10%. The UHI effect after using BIPV relies on the surface absorptivity of original building. In this case, the daily total PV electricity output in urban areas may be reduced by 13% compared with the suburban areas due to UHI and solar radiation attenuation because of urban air pollution. The calculation results reveal that it is necessary to pay attention to and further analyze interactions between BIPV and microdimate in urban environments to decrease urban pollution, improve BIPV performance and reduce cooling load. Copyright © 2006 by ASME.

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Building integrated photovoltaics (BIPV) has potential of becoming the mainstream of renewable energy in the urban environment. BIPV has significant influence on the thermal performance of building envelope and changes radiation energy balance by adding or replacing conventional building elements in urban areas. PTEBU model was developed to evaluate the effect of photovoltaic (PV) system on the microclimate of urban canopy layer. PTEBU model consists of four sub-models: PV thermal model, PV electrical performance model, building energy consumption model, and urban canyon energy budget model. PTEBU model is forced with temperature, wind speed, and solar radiation above the roof level and incorporates detailed data of PV system and urban canyon in Tianjin, China. The simulation results show that PV roof and PV façade with ventilated air gap significantly change the building surface temperature and sensible heat flux density, but the air temperature of urban canyon with PV module varies little compared with the urban canyon of no PV. The PV module also changes the magnitude and pattern of diurnal variation of the storage heat flux and the net radiation for the urban canyon with PV increase slightly. The increase in the PV conversion efficiency not only improves the PV power output, but also reduces the urban canyon air temperature. © 2006.

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It is generally recognized that BIPV (building integrated photovoltaics) has the potential to become a major source of renewable energy in the urban environment. The actual output of a PV module in the field is a function of orientation, total irradiance, spectral irradiance, wind speed, air temperature, soiling and various system-related losses. In urban areas, the attenuation of solar radiation due to air pollution is obvious, and the solar spectral content subsequently changes. The urban air temperature is higher than that in the surrounding countryside, and the wind speed in urban areas is usually less than that in rural areas. Three different models of PV power are used to investigate the effect of urban climate on PV performance. The results show that the dimming of solar radiation in the urban environment is the main reason for the decrease of PV module output using the climatic data of urban and rural sites in Mexico City for year 2003. The urban PV conversion efficiency is higher than that of the rural PV system because the PV module temperature in the urban areas is slightly lower than that in the rural areas in the case. The DC power output of PV seems to be underestimated if the spectral response of PV in the urban environment is not taken into account based on the urban hourly meteorological data of Sao Paulo for year 2004. © 2006 Elsevier Ltd. All rights reserved.

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BIPV(Building Integrated Photovoltaics) has progressed in the past years and become an element to be considered in city planning. BIPV has influence on microclimate in urban environments and the performance of BIPV is also affected by urban climate. The effect of BIPV on urban microclimate can be summarized under the following four aspects. The change of absorptivity and emissivity from original building surface to PV will change urban radiation balance. After installation of PV, building cooling load will be reduced because of PV shading effect, so urban anthropogenic heat also decreases to some extent. Because PV can reduce carbon dioxide emissions which is one of the reasons for urban heat island, BIPV is useful to mitigate this phenomena. The anthropogenic heat will alter after using BIPV, because partial replacement of fossil fuel means to change sensible heat from fossil fuel to solar energy. Different urban microclimate may have various effects on BIPV performance that can be analyzed from two perspectives. Firstly, BIPV performance may decline with the increase of air temperature in densely built areas because many factors in urban areas cause higher temperature than that of the surrounding countryside. Secondly, the change of solar irradiance at the ground level under urban air pollution will lead to the variation of BIPV performance because total solar irradiance usually is reduced and each solar cell has a different spectral response characteristic. The thermal model and performance model of ventilated BIPV according to actual meteorologic data in Tianjin(China) are combined to predict PV temperature and power output in the city of Tianjin. Then, using dynamic building energy model, cooling load is calculated after BIPV installation. The calculation made based in Tianjin shows that it is necessary to pay attention to and further analyze interaction between them to decrease urban pollution, improve BIPV Performance and reduce colling load. Copyright © 2005 by ASME.

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Previous research has shown that hydraulic systems offer potentially the lightest and smallest regenerative braking technology for heavy goods vehicles. This paper takes the most practical embodiment of a hydraulic system for an articulated urban delivery vehicle and investigates the best specification for the various components, based on a simulated stop-start cycle. The potential energy saving is quantified. © 2011 IEEE.