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BIPV-temp: A demonstrative Building Integrated Photovoltaic installation

机译:BIPV-temp:建筑一体化光伏示范设施

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摘要

This paper presents the results of a demonstrative Building Integrated Photovoltaic (BIPV) installation in Lugano where five BiPV modules with different integration solutions (fully integrated as Double Glaze Units (DGUs) and ventilated), different inclinations (30 degrees and 90 degrees) and different technologies (double junction amorphous silicon (a-Si/a-Si) and crystalline silicon (c-Si)) were investigated. The paper aims at evaluating the impact of the operating cell temperature on the modules' performance for different investigating cases. Two models were used to calculate the junctions' temperatures of the modules under operation: the simplified Nominal Operating Temperature (NOCT) model and the Equivalent Cell Temperature (ECT). The first was used in a simplified version and the second was used for all modules, regardless of its limitations for thin film technologies. The two models agree well and give satisfactory results regardless of the inclination, integration solution or technology. The difference between the NOCT and ECT calculated average daily temperatures of the modules was found to be less than 5-6 degrees C, with only one exception. As expected, fully integrated modules exhibit higher temperatures. In terms of performance, the integrated c-Si modules, regardless of their inclination, ranked lower - in terms of energy yield - than the integrated and ventilated a-Si/a-Si modules, for which the high operating temperatures proved to be beneficial. The inclination of 90 degrees was found to be ideal for Lugano for both c-Si and a-Si/a-Si modules. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文介绍了在卢加诺安装示范性建筑物集成光伏(BIPV)的结果,其中五个具有不同集成解决方案(完全集成为双层釉料单元(DGU)和通风),不同倾斜度(30度和90度)和不同角度的BiPV模块研究了双结非晶硅(a-Si / a-Si)和晶体硅(c-Si)等技术。本文旨在评估不同研究案例中工作电池温度对模块性能的影响。使用两个模型来计算操作中模块的结点温度:简化的标称工作温度(NOCT)模型和等效电池温度(ECT)。第一个用于简化版本,第二个用于所有模块,无论其对薄膜技术的限制如何。不论倾斜度,集成解决方案或技术如何,这两种模型都可以很好地吻合并给出令人满意的结果。发现NOCT和ECT计算得出的模块平均日温度之间的差异小于5-6摄氏度,只有一个例外。正如预期的那样,完全集成的模块具有较高的温度。在性能方面,集成的c-Si模块,无论其倾斜度如何,在能量产率方面,都比集成和通风的a-Si / a-Si模块低,后者证明了较高的工作温度是有利的。人们发现,对于c-Si和a-Si / a-Si组件,卢加诺90度倾斜都是理想的选择。 (C)2016 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Applied Energy》 |2016年第1期|1-12|共12页
  • 作者单位

    Univ Appl Sci & Arts Southern Switzerland, Inst Appl Sustainabil Built Environm SUPSI ISAAC, Campus Trevano, CH-6952 Canobbio Lugano, Switzerland;

    Univ Appl Sci & Arts Southern Switzerland, Inst Appl Sustainabil Built Environm SUPSI ISAAC, Campus Trevano, CH-6952 Canobbio Lugano, Switzerland;

    Univ Appl Sci & Arts Southern Switzerland, Inst Appl Sustainabil Built Environm SUPSI ISAAC, Campus Trevano, CH-6952 Canobbio Lugano, Switzerland;

  • 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

    Working temperatures; Performance BIPV; Temperature; Amorphous silicon; Performance ratio;

    机译:工作温度;性能BIPV;温度;非晶硅;性能比;

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