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New Developments in the Modeling and Simulations of the Thermal Behavior and Electrical Yield of Photovoltaics Panels - With the Consideration of Desert Environmental Conditions

机译:光伏板热行为建模与模拟建模与模拟 - 对沙漠环境条件的考虑

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Due to its inherent nature, a standard photovoltaic (PV) cell can absorb around 80% of incident solar irradiation from the complete solar spectrum. The cell directly converts only a small portion of this absorbed energy into electric current. The remainder only increases the temperature of the PV cell, which in return decreases the electrical output of the PV cells. Thus, there is a direct relation between thermal energy and electrical yield of a PV panel. From a design point of view, a designer needs credible prediction tools to efficiently and accurately estimate a system's performance before installation. This review covers the progress made so far in these related modelling and simulation tools. In the end, the authors suggest adopting the best practices through literature and via their own personal contributions in the field to get maximum possible prediction accuracy.
机译:由于其固有的性质,标准光伏(PV)电池可以从完整的太阳光谱中吸收约80%的入射太阳照射。该电池直接将该吸收能量的一小部分转换成电流。其余的仅增加光伏电池的温度,其换回物降低了PV电池的电输出。因此,PV面板的热能和电源之间存在直接关系。从设计的角度来看,设计人员需要可信的预测工具,以便在安装前有效准确地估计系统的性能。此述评涵盖了在这些相关建模和仿真工具中迄今为止所取得的进展。最终,作者表明通过文学和通过他们在现场的个人贡献采用最佳实践来获得最大可能的预测准确性。

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