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Thermophotovoltaic applications in waste heat recovery systems: example of GaSb cell

机译:废热回收系统中的热药物应用:气体细胞的示例

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摘要

In this study, it is aimed at evaluating real data in high temperature GaSb cell thermophotovoltaic (TPV) systems. The TPV systems are considered as an alternative energy source in terms of efficient use of waste heat, cost and efficiency. The TPV system can be defined as a system that converts waste heat energy emitted from heat sources into electrical energy at high temperature. In this context, efficiency and parameters of TPV GaSb cells have been determined in laboratory conditions. The conversion of the high temperature applied to the cell to electrical energy has been investigated by selecting the GaSb photovoltaic cell as the cell type. According to the analysis have been done so far, TPV high-temperature real graphics have been obtained using GaSb cell. The temperature parameters used are, namely, cell temperature and source temperature. With these graphs, energy efficiency, fill factor, effect of open-circuit voltage and short-circuit current values have been determined. While the efficiency value of the GaSb TPV cell systems was calculated, the radiation source temperature values have been taken in increments of 300 K between 1300 and 3100 K. In this analysis, the optimum energy conversion efficiency values of GaSb solar cell structure have been detected to be 21.57%. Opinions about the feasibility, efficiency and development of thermophotovoltaic energy conversion systems are stated, and suggestions are presented.
机译:在本研究中,它旨在评估高温气体蒸汽散热物(TPV)系统中的实际数据。在有效使用废热,成本和效率方面,TPV系统被认为是替代能源。 TPV系统可以定义为将从热源发射的废热能量转换为高温电能的系统。在这种情况下,在实验室条件下已经确定了TPV气体细胞的效率和参数。通过选择喘气光伏电池作为细胞类型,研究了将施加到电池到电能的高温的转化。根据该分析已经完成到目前为止,已经使用GASB电池获得了TPV高温实际图形。所用的温度参数是,即细胞温度和源极温度。利用这些图形,能量效率,填充因子,开路电压和短路电流值的效果。虽然计算了Gasb TPV电池系统的效率值,但在1300和3100k之间的增量辐射源温度值以300k的增量拍摄。在该分析中,已经检测到喘气太阳能电池结构的最佳能量转换效率值21.57%。阐述了热药物能量转换系统的可行性,效率和发展的看法,提出了建议。

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