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首页> 外文期刊>Applied Energy >Envisioning advanced solar electricity generation: Parametric studies of CPV/T systems with spectral filtering and high temperature PV
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Envisioning advanced solar electricity generation: Parametric studies of CPV/T systems with spectral filtering and high temperature PV

机译:设想先进的太阳能发电:具有光谱过滤和高温PV的CPV / T系统的参数研究

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摘要

Hybrid photovoltaic/thermal (PV/T) devices can simultaneously generate thermal and electrical energy, but have been limited to low temperature applications. This is done to avoid performance degradation of the PV cell at high temperatures. While the low temperature approach limits PV losses, it would be desirable to develop concentrating photovoltaic/thermal (CPV/T) systems which operate at higher temperatures where the thermal energy can be utilized for electricity production. In addition to using more of the sunlight, these systems may help realize low costs as well as dispatchability through thermal energy storage. Presented here are two primary configurations: the first where the PV cell and thermal system are decoupled, and the second where the PV cell acts as the high temperature absorber. The efficiency of these systems and their ratio of thermal to electrical energy produced are reported as a function of architecture, cell bandgap, and thermal system peak temperature. The studies provide a basis to understand and compare the performance of CPV/T at different operating conditions and architectures. The results indicate that the configurations that utilize recovery of waste heat off the PV cell can achieve the highest efficiency at low concentration ratios, but it remains to be seen if PV cells can survive the temperatures necessary. The thermally decoupled case is attractive in terms of efficiency and operating temperature of the PV cell, but requires significantly higher concentration ratios. Both configurations can achieve exergetic efficiencies exceeding 40% and greater than 50% of the solar energy converted to dis-patchable thermal exergy.
机译:光伏/热电(PV / T)混合设备可以同时产生热能和电能,但仅限于低温应用。这样做是为了避免高温下PV电池的性能下降。尽管低温方法限制了PV的损失,但仍需要开发在较高温度下工作的聚光光伏/热能(CPV / T)系统,在该系统中可以将热能用于发电。除了使用更多的阳光外,这些系统还可以帮助通过热能存储实现低成本以及可调度性。这里介绍了两个主要配置:第一个配置是将PV电池和热系统分离,第二个配置是将PV电池用作高温吸收剂。据报道,这些系统的效率及其产生的热能与电能之比是架构,电池带隙和热系统峰值温度的函数。这些研究为理解和比较CPV / T在不同操作条件和架构下的性能提供了基础。结果表明,利用回收的太阳能电池废热的配置可以在低浓度比下实现最高效率,但是,太阳能电池能否在必要的温度下生存还需拭目以待。就PV电池的效率和操作温度而言,热解耦的情况是有吸引力的,但是需要明显更高的浓度比。两种配置均可实现超过转换为可分派热能的太阳能的40%以上和50%以上的能效。

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