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Simulation Study of Building Integrated Solar Liquid PV-T Collectors

机译:建筑物集成太阳能液体PV-T收集器的仿真研究

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摘要

Influence of building integration of polycrystalline PV modules on their performance and potential for use of active liquid cooling by use of BIPV-T collectors has been investigated by simulation analysis with a detailed model. Integration of PV modules into building envelope could reduce the annual production of electricity by a rate above 5% and negatively influence lifetime due to thermal stresses induced by high operation temperatures above 100°C in the case of warm climate and above 90°C in moderate climate. Two configurations of unglazed PV-T collectors (low-tech, high-tech) and their ability to eliminate overheating of BIPV module have been discussed. Simulation study on combined heat and electricity production from given BIPV-T collectors has been presented for three typical applications (5°C: primary circuits of heat pumps; 15°C: cold water preheating; 25°C: pool water preheating). Thermal output of unglazed BIPV-T collectors is up to 10 times higher than electricity. Electricity production could be up to 25% higher than BIPV (without cooling) for warm climate and up to 15% in moderate climate.
机译:构建的多晶PV模块集成在它们的性能和潜在的使用活性的液体的通过使用BIPV-T收集器的冷却的影响已与详细模型中研究通过仿真分析。 PV模块集成到围护结构可以由一个速率降低每年生产电力的5%以上和带负由于在温暖气候的情况下在100℃以上引起的高的操作温度的热应力和高于90影响寿命℃下,在温和的气候。无釉PV-T收集器(技术含量低,高科技)及其消除BIPV模块的过热能力的两种配置进行了讨论。从给定的BIPV-T收集器组合热和电力生产模拟研究已经提出了三种典型应用程序(5℃:热初级电路泵; 15℃:冷水预热; 25℃:池水预热)。无釉BIPV-T收集器的热输出是高达10倍高于电力。电力生产能为温暖的气候和高达15%的温和的气候是高达25%,比BIPV较高(无冷却)。

著录项

  • 作者

    Tomas Matuska;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 eng
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