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Thermoelectric Oxide Modules (TOMs) for the Direct Conversion of Simulated Solar Radiation into Electrical Energy

机译:用于将模拟太阳辐射直接转换为电能的热电氧化物模块(TOM)

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摘要

The direct conversion of concentrated high temperature solar heat into electrical energy was demonstrated with a series of four–leg thermoelectric oxide modules (TOM). These temperature stable modules were not yet optimized for high efficiency conversion, but served as proof-of-principle for high temperature conversion. They were constructed by connecting two p- (La1.98Sr0.02CuO4) and two n-type (CaMn0.98Nb0.02O3) thermoelements electrically in series and thermally in parallel. The temperature gradient ΔT was applied by a High–Flux Solar Simulator source (HFSS) which generates a spectrum similar to solar radiation. The influence of the graphite layer coated on the hot side of the Al2O3 substrate compared to the uncoated surface on ΔT, Pmax and η was studied in detail. The measurements show an almost linear temperature profile along the thermoelectric legs. The maximum output power of 88.8 mW was reached for a TOM with leg length of 5 mm at ΔT = 622 K. The highest conversion efficiency η was found for a heat flux of 4–8 W cm-2 and the dependence of η on the leg length was investigated.
机译:一系列四脚热电氧化物模块(TOM)演示了将高温高温太阳能直接转换为电能的方法。这些温度稳定模块尚未针对高效率转换进行优化,但可作为高温转换的原理证明。它们是通过串联和并联热连接两个p-(La1.98Sr0.02CuO4)和两个n-型(CaMn0.98Nb0​​.02O3)热电偶而构建的。温度梯度ΔT由高通量太阳模拟器源(HFSS)施加,该源产生类似于太阳辐射的光谱。详细研究了在Al2O3基材的热面上涂覆的石墨层与未涂覆表面相比对ΔT,Pmax和η的影响。测量结果显示沿热电支路的温度曲线几乎呈线性。在ΔT= 622 K时,腿长5 mm的TOM达到最大输出功率88.8 mW。对于4–8 W cm -2 的热通量,发现最高转换效率η研究了η对腿长的依赖性。

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