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首页> 外文期刊>Solar Energy >A novel approach to compare building-integrated photovoltaics/thermal air collectors to side-by-side PV modules and solar thermal collectors
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A novel approach to compare building-integrated photovoltaics/thermal air collectors to side-by-side PV modules and solar thermal collectors

机译:一种将建筑物集成的光伏/热空气收集器与并排的光伏模块和太阳能热收集器进行比较的新颖方法

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摘要

Building-integrated photovoltaics with thermal energy recovery (BIPV/T) shows great potential for integration into net-zero energy buildings. This technology is still not widely used, however. One of the reasons is that its advantages compared to traditional PV modules and solar thermal collectors are unclear. This study addresses the lack of a methodology on how to perform such comparison. It also presents a case study on how this novel approach can be used to demonstrate the actual energy and economic benefits of BIPV/T air systems compared to side-by-side PV modules and solar thermal collectors for residential applications. In this methodology, the thermal energy produced by both systems is transferred into water using a heat exchanger and the concept of annual equivalent useful thermal energy production is used to combine thermal and electrical energy. To perform the analysis, a detailed model of a BIPV/T system was developed and validated against experimental data. Then, the following systems were modeled in TRNSYS: a BIPV/T air system and side-by-side PV modules and liquid solar thermal collectors (PV + T). A case study was performed by simulating the performance of both systems on a 40 m~2 south-facing roof located in Montreal, Canada. The total energy produced by both systems was assessed by converting electricity into heat with various conversion factors. For a factor of 2, the BIPV/T system was found to produce 5-29% more equivalent useful thermal energy than the PV + T system for a water temperature at the heat exchanger inlet corresponding to 10 ℃. Under similar operating conditions and for systems operating all year long, the acceptable cost to recover the heat from the BIPV system in order to break even with the cost of the PV + T system was found to be 7000 CAD.
机译:具有热能回收(BIPV / T)的建筑集成光伏发电显示出整合为零能耗建筑的巨大潜力。但是,该技术仍未广泛使用。原因之一是,与传统的光伏模块和太阳能集热器相比,其优势尚不清楚。这项研究解决了缺乏有关如何进行这种比较的方法的问题。它还提供了一个案例研究,说明与住宅用并排PV组件和太阳能集热器相比,如何使用这种新颖的方法来展示BIPV / T空气系统的实际能源和经济利益。在这种方法中,两个系统产生的热能都使用热交换器转移到水中,并且每年等效的有用热能产生量的概念被用来结合热能和电能。为了进行分析,开发了BIPV / T系统的详细模型并针对实验数据进行了验证。然后,在TRNSYS中对以下系统进行了建模:BIPV / T空气系统以及并排的PV模块和液体太阳能集热器(PV + T)。通过模拟这两个系统在加拿大蒙特利尔的一个40 m〜2朝南屋顶上的性能进行了案例研究。通过使用各种转换因子将电转换为热来评估两个系统产生的总能量。对于换热器入口处的水温(对应于10℃),发现BIPV / T系统产生的等效热能比PV + T系统高出5-29%,为2倍。在类似的运行条件下以及对于全年运行的系统,发现从BIPV系统中回收热量以达到收支平衡的可接受成本为PV + T系统的成本为7000加元。

著录项

  • 来源
    《Solar Energy》 |2014年第2期|50-65|共16页
  • 作者单位

    Natural Resources Canada, Canmet ENERGY, 1615 Lionel-Boulet, Varennes, Quebec J3X 1S6, Canada;

    Ecole Polytechnique de Montreal, PO Box 6079 STN Centre-ville, Montreal, Quebec H3C 3A7, Canada;

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

    Building-integrated photovoltaics; Heat recovery; Hybrid collector; Conversion;

    机译:建筑一体化光伏;热回收;混合收集器;转换次数;

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