论文标题
基于辐射冷却的热电发生器的建模和优化
Modeling and optimization of radiative cooling based thermoelectric generators
论文作者
论文摘要
夜间发电的可能性最近激发了对使用热电发电机(TEG)使用辐射天空冷却机制的兴趣。这些被动的低温差异设备已显示出在夜间发电,而无需热量输入热量,而是将环境空气本身作为热源。在这里,我们优化了辐射冷却驱动热电(RC-TE)发电机的几何形状和工作条件。我们通过开发组合的热模型来确定最佳的工作条件,包括最大功率点和最大效率点。我们的结果表明,最佳操作条件会导致比以前预期的更大的功率输出。此外,我们表明,当冷却器和P或N元素之间的面积比达到最佳值时,最大功率密度就会发生。最后,我们进行了一项参数研究,该研究考虑了环境和结构参数,以提高RC-TE设备的性能,包括增强热表面和环境空气之间的热传递,抑制辐射冷却器的冷却损失,并优化单个热电偶的几何形状。我们的工作确定了如何最大化RC-TE设备的输出,并为使用这种新的被动发电方法提供了全面的指导。
The possibility of night-time power generation has recently stimulated interest in using the radiative sky cooling mechanism with thermoelectric generators (TEG). These passive, low-temperature difference devices have been shown to generate electricity at night with no active input of heat needed, instead using the ambient air itself as the heat source. Here, we optimize both the geometry and operating conditions of radiative cooling driven thermoelectric (RC-TE) generators. We determine the optimal operating conditions, including maximum power point and maximum efficiency point, by developing a combined thermal and electrical model. Our results show that the optimal operating condition results in larger power output than was previously expected. Moreover, we show that maximum power density occurs when the area ratio between cooler and P or N element reaches an optimal value. Finally, we perform a parametric study that takes account of environmental and structural parameters to improve the performance of the RC-TE device, including enhancing heat transfer between the hot surface and ambient air, suppressing the cooling loss of the radiative cooler, and optimizing the geometry of individual thermocouples. Our work identifies how to maximize the output of RC-TE devices and provides comprehensive guidance on making use of this new passive power generation method.