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首页> 外文期刊>Renewable energy >Overall energy performance of semi-transparent single-glazed photovoltaic (PV)window for a typical office in Hong Kong
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Overall energy performance of semi-transparent single-glazed photovoltaic (PV)window for a typical office in Hong Kong

机译:香港典型办公室的半透明单层光伏(PV)窗口的整体能源性能

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摘要

This paper develops an overall methodology for investigating the thermal and power behaviors of semi-transparent single-glazed photovoltaic window for office buildings in Hong Kong. In order to estimate its overall energy performance, this study is conducted in terms of total heat gain, output power and daylight illuminance. Three simulation models are established, including one-dimensional transient heat transfer model, power generation model and indoor daylight illuminance model. A typical office room reference is chosen as case study, and the weather data from 2003 to 2007 from the Hong Kong Observatory are used as the simulation inputs. By incorporating the simulation results, the overall energy performance can be evaluated in terms of electricity benefits corresponding to five orientations of the studied typical office. The priority of office orientation considering overall energy performance is: southeast, south, east, south-west and west. The findings show that thermal performance is the primary consideration of energy saving in the entire system whereas electricity consumption of artificial lighting is the secondary one. The overall annual electricity benefits are about 900 kWh and 1300 kWh for water-cooled and air-cooled air-conditioning systems respectively. The application of semi-transparent PV glazed window can not only produce clean energy, but also reduce building energy use by reducing the cooling load and electrical lighting requirements, which definitely benefits our environmental and economic aspects.
机译:本文研究了一种用于研究香港办公建筑的半透明单玻璃光伏窗户的热和功率行为的整体方法。为了估计其总体能源性能,本研究以总热量获取,输出功率和日照度进行。建立了三个仿真模型,包括一维瞬态传热模型,发电模型和室内日照度模型。选择典型的办公室参考作为案例研究,并使用香港天文台2003年至2007年的天气数据作为模拟输入。通过合并模拟结果,可以根据与所研究的典型办公室的五个方向相对应的用电效益来评估总体能源绩效。考虑整体能源绩效的办公室定位的优先顺序是:东南,南部,东部,西南和西部。研究结果表明,热性能是整个系统节能的首要考虑因素,而人造照明的电力消耗是次要考虑因素。对于水冷式和风冷式空调系统,每年的总电力收益分别约为900 kWh和1300 kWh。半透明PV玻璃窗的应用不仅可以产生清洁能源,还可以通过减少冷却负荷和减少电气照明需求来减少建筑能耗,这无疑有利于我们的环境和经济方面。

著录项

  • 来源
    《Renewable energy》 |2013年第1期|250-254|共5页
  • 作者

    Lin Lu; Kin Man Law;

  • 作者单位

    Renewable Energy Research Croup, Department of Building Services Engineering, The Hong Kong Polytechnic University, Hong Kong, China;

    Renewable Energy Research Croup, Department of Building Services Engineering, The Hong Kong Polytechnic University, Hong Kong, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    single-glazed PV window; thermal performance; power behavior; building energy use;

    机译:单层玻璃PV窗;热性能权力行为;建筑能耗;

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