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Experimental analysis and evaluation of a vacuum enclosed concentrated solar thermoelectric generator coupled with a spectrally selective absorber coating

机译:真空封闭式浓缩太阳能热电发电机与光谱选择性吸收剂涂层的实验分析及评价

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摘要

Significant research in the past decade has been focused on quantitatively and qualitatively validating potential of solar thermoelectric modules to harness electricity. In the present study, we have experimentally analysed steady-state temperature variation of a spectrally selective solar absorber coating (α?=?0.954, ε?=?0.13) with variation in solar irradiation flux (concentration ratios?=?39, 50 and 65) using Fresnel lens and vacuum enclosure pressure (200?mbar to 900?mbar in steps of 100?mbar). It is observed that the experimental results so obtained go hand in hand with a COMSOL simulation model of the set-up. Further, we have carried out performance analysis of a solar thermoelectric generator (STEG) set-up enclosed in vacuum conditions equipped with Fresnel lens and absorber set-up coupled to Bi2Te3 thermoelectric module array electrically connected in series. The results depict a maximum power output of 0.91?W and a peak efficiency of 2.21% at a hot-side temperature of 642?K.
机译:过去十年的显着研究一直专注于定量和定性验证太阳能热电模块的潜力来利用电力。 在本研究中,我们已经通过实验分析了光谱选择性太阳能吸收剂涂层的稳态温度变化(α≤= 0.954,ε?0.13),太阳照射通量的变化(浓度比?=?39,50和 65)使用菲涅耳透镜和真空外壳压力(200≤mbar至900?mbar,步骤为100?mbar)。 观察到实验结果如此获得的,并使用设置的COMSOL仿真模型携手共进。 此外,我们已经对在配备有菲涅耳透镜和耦合到串联电连接的Bi2Te3热电模块阵列的菲涅耳透镜和吸收器设置中的真空条件中进行了性能分析。 结果描绘了0.91μw的最大功率输出,峰值效率为642Ω·k的热侧温度。

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