首页> 外文会议>International Solar Energy Conference >PERFORMANCE EVALUATION OF PHOTOVOLTAIC POWER-GENERATION SYSTEM EQUIPPED WITH A COOLING DEVICE UTILIZING SIPHONAGE (2ND REPORT, IMPROVEMENT OF A PV SYSTEM PLACED ON A RESIDENTIAL ROOFTOP)
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PERFORMANCE EVALUATION OF PHOTOVOLTAIC POWER-GENERATION SYSTEM EQUIPPED WITH A COOLING DEVICE UTILIZING SIPHONAGE (2ND REPORT, IMPROVEMENT OF A PV SYSTEM PLACED ON A RESIDENTIAL ROOFTOP)

机译:具有利用Siphonage的冷却装置的光伏发电系统性能评估(第2次报告,改进住宅屋顶上的PV系统)

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PV modules have a problem that the power generated decreases with the rise of the PV module temperature. In order to solve the problem, we recently developed a new PV cooling device utilizing siphonage. In the first report [1] of this series, we presented the experimental results on the PV mounted on an open rack and that the cooling system is effective in both the improvement of the PV efficiency and the reduction of fuel consumption by reusing hot water from the system. In this study, we conducted long-term monitoring tests on the open rack-mount PV system with a cooling panel behind the PV module and with an insulation board (made of foam polystyrene) behind the cooling panel, simulating the residential rooftop PV system. The data obtained in the experiment have been compared with those obtained for the previous system with the cooling panel but without the insulation board. The comparison shows that the increment in energy production after equipping the cooling panel is much more for the present system with the insulation board irrespective of the cooling start temperature, being the PV temperature when cooling water was started to flow. This result suggests that the installation of the cooling system is more useful for the residential rooftop PV system than the open rack-mount system.
机译:光伏模块存在电源因光伏模块温度的升高而产生的问题。为了解决问题,我们最近开发了一种利用Siphonage的新型光伏冷却装置。在本系列的第一份报告[1]中,我们提出安装在开放的机架上的PV的实验结果,并且所述冷却系统是有效的的PV效率两者的改善和燃料消耗的通过再利用热水从还原系统。在这项研究中,我们在PV模块后面的冷却面板和冷却面板后面的冷却面板进行了长期监控测试,并使用了冷却板后面的绝缘板(由泡沫聚苯乙烯制成),模拟住宅屋顶光伏系统。将在实验中获得的数据与用冷却面板的先前系统获得的数据进行了比较,但没有绝缘板。比较表明,在装备冷却面板后的能量生产中的增量对于本发明的系统,绝缘板与冷却开始温度无关,作为冷却水开始流动时的光伏温度。该结果表明,冷却系统的安装对于居民屋顶光伏系统比开放式机架安装系统更有用。

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