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Experimental Performance of a Solar Thermoelectric Cogenerator Comprising Thermoelectric Modules and Parabolic Trough Concentrator without Evacuated Tube

机译:包含热电模块和抛物槽式集热器的无集热管太阳能热电发电机的实验性能

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摘要

A prototype practical solar-thermoelectric cogenerator composed of (1) a primary component of a pile of solar-selective absorber (SSA) slab, thermoelectric (TE) modules, and a depressed water flow tube (multichannel cooling heat sink, MCS), and (2) a parabolic trough concentrator with aperture area of 2A, mA, A integral-A, 2A, m and eastA cent a,not signaEuroewest focal axis was constructed. Its cogeneration performance under the best climatic and solar insolation conditions in Guangzhou, China was tested. For simplicity, the evacuated glass tube to cover the primary component was eliminated from the system. Six Bi2Te3 TE modules were arranged in series, directly bonded to the rear surface of the solar absorber slab. The hot-side temperature of the TE module reached up to 152A,A degrees C. The experimentally obtained instantaneous results for the solar to electrical conversion efficiency, heat exchange coefficient of the MCS, and overall system efficiency under the best environmental and solar insolation conditions were about 1.14%, 56.1%, and 49.5%, respectively. To justify these values, an equivalent thermal network diagram based on a single-temperature-node heat transfer model representing the respective system components was used to analyze the thermal transfer and losses of the system. Finally, electrical power of 18A,A W was generated, with 2A,A L/min of hot water at 37A,A degrees C being produced and stored in the insulated container.
机译:实用的太阳能热电原型机的原型,它由(1)一堆太阳能选择性吸收器(SSA)板的主要组件,热电(TE)模块和一个低压水流管(多通道冷却散热器,MCS)组成,以及(2)构造了抛物槽式聚光器,其孔径面积为2A,mA,A积分,A,2A,m和EastA cent a(无符号)。测试了其在中国广州最佳气候和日照条件下的热电联产性能。为简单起见,从系统中取消了覆盖主要部件的真空玻璃管。六个Bi2Te3 TE模块串联排列,直接粘合到太阳能吸收板的背面。 TE模块的热侧温度达到152A,A摄氏度。在最佳环境和日晒条件下,通过实验获得的瞬时结果,包括太阳能到电的转换效率,MCS的热交换系数以及整个系统的效率。分别约为1.14%,56.1%和49.5%。为了证明这些值的合理性,使用了基于表示各个系统组件的单温度节点传热模型的等效热网络图来分析系统的热传递和损失。最终,产生了18A,A W的电力,并产生了2A,37 A,A摄氏度的A L / min的热水并将其存储在绝缘容器中。

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