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Potential of module arrangements to enhance convective cooling in solar photovoltaic arrays

机译:模块布置的潜力,以增强太阳能光伏阵列的对流冷却

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When solar photovoltaic (PV) module temperatures rise during operation, commonly-installed modules experience an efficiency loss between 0.1 and 0.5% per degree above 25 degrees C. Thus, extensive research has aimed to reduce the operating temperature of solar modules. However, many cooling solutions require additional cost or equipment that precludes their implementation in utility-scale PV plants. Based on previous studies of land-atmosphere interactions of surface thermal heterogeneity, we hypothesize that certain solar farm arrangements may enhance natural convective heat transfer between the solar modules and surrounding flow. Due to the strong non-linear relationship between module temperature and convective heat transfer, enhancing the convective cooling could have substantial impacts on module efficiency. Here, we investigate the potential impact of module arrangements on the convective cooling of large PV arrays. Three idealized module arrangements are evaluated in comparison to the traditional, row-organized arrangement. To characterize each arrangement, a non-dimensional packing parameter is developed. Numerical simulation results indicate that dense arrangements with larger packing parameters more effectively enhance convective cooling than sparse arrangements. Compared to the baseline, the most compact arrangement exhibited an increase in convective heat transfer of 14.8%. These results indicate that module arrangement plays an influential role in solar farm convective cooling. (C) 2020 The Authors. Published by Elsevier Ltd.
机译:当太阳能光伏(PV)模块温度在运行期间上升时,普通安装的模块在25摄氏度高于25摄氏度以上的0.1和0.5%之间的效率损失。因此,广泛的研究旨在降低太阳能模块的工作温度。然而,许多冷却解决方案需要额外的成本或设备,该成本或设备排除在公用尺度光伏植物中的实施。基于以前的地面热异质性的土地气氛相互作用,我们假设某些太阳能农场布置可以增强太阳能模块和周围流动之间的自然对流热传递。由于模块温度和对流传热之间的强烈的非线性关系,增强对流冷却可能会对模块效率产生大量影响。在这里,我们研究了模块布置对大型光伏阵列的对流冷却的潜在影响。与传统的行组织的安排相比,评估了三种理想化的模块布置。为了表征每个布置,开发了非维包装参数。数值模拟结果表明,具有较大填充参数的密集布置更有效地增强了与稀疏布置的对流冷却。与基线相比,最紧凑的布置表现出对流热传递增加14.8%。这些结果表明,模块布置在太阳能农场对流冷却中起着影响力的作用。 (c)2020作者。 elsevier有限公司出版

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