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Performance evaluation of a new design of concentrator photovoltaic and solar thermoelectric generator hybrid system

机译:浓缩仪光伏和太阳能热电发电机混合系统新设计的性能评价

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A new configuration of a photovoltaic module and a solar thermoelectric generator in a hybrid system integrated with a microchannel heat sink has been developed. The photovoltaic module and the solar thermoelectric generator sandwich the microchannel heat sink, as they are exposed to concentrated solar radiation. This newly developed hybrid system is compared to that with a conventional configuration in which an ordinary thermoelectric generator is attached directly to the rear surface of the concentrator photovoltaic module. To evaluate the performance of the new system in comparison to the conventional one, an all-inclusive three-dimensional thermo-fluid-thermoelectric model has been developed. This model is numerically simulated and is validated with both experimental and numerical results. The findings of this study show that the new system generates more output power and can be operated at higher concentration ratios with even lower average solar cell temperatures than the conventional system. In the new configuration, the average solar cell temperature is approximately 77 degrees C and the total electrical output power is approximately 3.2 kW/m(2) at a solar concentration ratio of 20 suns. However, the maximum possible working concentration ratio for the conventional design is 10 suns, where the solar cell temperature approaches the highest tolerable temperature of approximately 90 degrees C. Moreover, the total electrical output power is approximately 1.2 kW/m(2). Furthermore, it is found that at CR_PV = 20, the rate of the produced thermal energy is approximately 12 kW/m(2), for the conventional design while the new design achieves 15, 22, and 30 kW/m(2) for CR_STEG of 1, 10, and 20, respectively. These findings have greatly aided in identifying a new design that achieves the highest performance under concentrated solar irradiance.
机译:已经开发出一种新的光伏模块和用于与微通道散热器集成的混合系统中的光伏模块和太阳能热电发电机的配置。光伏模块和太阳能热电发电机夹在微通道散热器,因为它们暴露于浓缩的太阳辐射。该新开发的混合系统与传统结构进行比较,其中普通的热电发电机直接连接到浓缩器光伏模块的后表面。为了评估新系统的性能与传统的一个,已经开发了全包三维热流体 - 热电模型。该模型在数模上模拟,并验证了实验性和数值结果。该研究的发现表明,新系统产生更多的输出功率,并且可以以甚至更低的平均太阳能电池温度低于传统系统以更高的浓度比操作。在新配置中,平均太阳能电池温度约为77摄氏度,并且总电输出功率以20阳光的太阳浓度比为约3.2kW / m(2)。然而,传统设计的最大可能工作浓度比为10个太阳,其中太阳能电池温度接近约90摄氏度的最高耐受温度。此外,总电输出功率约为1.2 kW / m(2)。此外,发现在CR_PV = 20,产生的热能的速率约为12 kW / m(2),用于传统设计,而新设计达到15,22和30kW / m(2) CR_STEG分别为1,10和20。这些发现在识别新的设计方面非常有助于实现集中的太阳辐照度下的最高性能的新设计。

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