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Case Study on the Energy Performance of the Zuckerman Institute for Connective Environmental Research (ZICER) Building

机译:祖克曼连接环境研究所(ZICER)建筑的能源性能案例研究

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摘要

In the early 1990s, the University of East Anglia in Norwich, UK, established a low-energy policy toward building design. In 1994, the first energy-efficient educational building was constructed on campus—the Elizabeth Fry building, which utilizes a hollow core ventilation system. Independent reviews at the time demonstrated that this was one of the best energy performing buildings in the UK. Several additional educational buildings of similar design have been built on campus, one of which is the Zuckerman Institute for Environmental Connective Research (ZICER) building, completed in 2003. The construction of the ZICER building is unusual. The main building envelope is served by a hollow core ventilation system, high in thermal mass, highly insulated and airtight, but on the opposite spectrum, a light weight, highly glazed structure made up of photovoltaic cells was added onto the building to make up the "Top Floor," home to an exhibition area and seminar room. This paper investigates the energy performance from the ZICER building's long-term submonitoring results and explains how the heating and cooling strategies evolved to meet half the building's energy consumption.
机译:在1990年代初期,英国诺里奇的东英吉利大学在建筑设计方面制定了低能耗政策。 1994年,校园内建造了第一座节能教育建筑Elizabeth Fry,该建筑利用了空心通风系统。当时的独立审查表明,这是英国最佳的节能建筑之一。校园内还建造了其他几座类似设计的教学楼,其中之一是扎克曼环境关联研究学院(ZICER)大楼,于2003年完工。ZICER大楼的建造是不寻常的。主建筑围护结构由空心的通风系统提供服务,该空心系统具有较高的热质量,高度绝缘性和气密性,但在相反的范围内,将由光伏电池组成的轻质高玻璃结构添加到建筑物中,从而构成了“顶层”,是展览区和研讨会室的所在地。本文从ZICER建筑物的长期子监测结果中研究了能源性能,并解释了供暖和制冷策略如何演变以满足建筑物能耗的一半。

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