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Experimental Analysis of Thermoelectric Heat Exchanger for Power Generation from Salinity Gradient Solar Pond Using Low-Grade Heat

机译:低级热量从盐度梯度太阳能池中发电热电换热器的实验分析

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Salinity gradient solar ponds act as an integrated thermal solar energy collector and storage system. The temperature difference between the upper convective zone and the lower convective zone of a salinity gradient solar pond can be in the range of 40-60A degrees C. The temperature at the bottom of the pond can reach up to 90A degrees C. Low-grade heat (< 100A degrees C) from solar ponds is currently converted into electricity by organic Rankine cycle engines. Thermoelectric generators can operate at very low temperature differences and can be a good candidate to replace organic Rankine cycle engines for power generation from salinity gradient solar ponds. The temperature difference in a solar pond can be used to power thermoelectric generators for electricity production. This paper presents an experimental investigation of a thermoelectric generators heat exchanger system designed to be powered by the hot water from the lower convective zone of a solar pond, and cold water from the upper convective zone of a solar pond. The results obtained have indicated significant prospects of such a system to generate power from low-grade heat for remote area power supply systems.
机译:盐度梯度太阳能池作为集成的热太阳能集热器和存储系统。上对流区和盐度梯度太阳能池的较低对流区之间的温差可以在40-60A℃的范围内。池塘底部的温度可以达到高达90A的低等级来自太阳能池的热(<100A℃)目前通过有机朗肯循环发动机转换为电力。热电发电机可以在极低的温度差异下运行,可以是替代来自盐度梯度太阳能池的有机朗肯循环发动机的良好候选者。太阳能池中的温差可用于为电力生产电动电力发电机。本文介绍了热电发电机热交换器系统的实验研究,该热交换器系统被设计为由太阳能池的较低对流区域供电的热水,以及来自太阳能池的上部对流区的冷水。获得的结果表明,这种系统的显着前景,以产生来自低级热量的远程区域电源系统的功率。

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