Sensitivity analysis of a solar thermophotovoltaic system with silicon thermal storage

M. Emziane, M. Alhosani
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引用次数: 3

Abstract

Transient simulations for solar thermophotovoltaic (STPV) systems utilizing silicon as phase change material (PCM) and Er3Al5O12 as selective emitter with Ge cell are presented. A sensitivity analysis was carried out in order to study the effect on the efficiency of the STPV system of the PCM size, solar irradiance and location of the selective emitter with respect to the receiver cavity. The results show that higher efficiencies can be achieved by placing the selective emitter and the PV cell close to the receiver cavity. Also, the optimum size of the PCM depends on the amount of incident solar radiation and the storage capacity required. Furthermore, increasing the solar flux to very high value or reduce it to very small value reduces the efficiency of the overall system.
硅蓄热太阳能热光伏系统的灵敏度分析
研究了以硅为相变材料、Er3Al5O12为选择性发射极、锗电池的太阳能热光伏(STPV)系统的瞬态模拟。为了研究PCM尺寸、太阳辐照度和选择性发射极相对于接收腔的位置对STPV系统效率的影响,进行了灵敏度分析。结果表明,将选择性发射极和PV电池放置在靠近接收腔的位置可以获得更高的效率。此外,PCM的最佳尺寸取决于入射太阳辐射量和所需的存储容量。此外,将太阳通量增加到很高的值或减小到很小的值都会降低整个系统的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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