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Method and device of a microchannel heat-absorbing device for a thermophotoelectric generator of electrical energy with a microgap

机译:用于具有微间隙的电能的热光电发电机的微通道吸热装置的方法和装置

摘要

A method and device for maintaining a low temperature of a cold-side emitter for improving the efficiency of a sub-micron gap thermophotovoltaic cell structure. A thermophotovoltaic cell structure may comprise multiple layers compressed together by a force mechanism so that the sub-micron gap dimension is relatively constant although the layer boundaries may not be substantially flat compared to the relatively constant sub-micron dimension. The layered structure includes a hot side thermal emitter having a surface separated from a photovoltaic cell surface by a sub-micron gap having a dimension maintained by spacers. The surface of the photovoltaic cell opposite the sub-micron gap is compressibly positioned against a surface of microchannel heat sink and the surface of the microchannel heat sink opposite the photovoltaic cell is compressibly positioned against a flat metal plate layer and a compressible layer.
机译:一种用于保持冷侧发射器的低温以提高亚微米间隙热光电电池结构的效率的方法和装置。热光电电池结构可以包括通过力机制压缩在一起的多个层,使得尽管与相对恒定的亚微米尺寸相比层边界可能不是基本上平坦的,但是亚微米间隙尺寸相对恒定。该层状结构包括热侧热发射器,该热侧热发射器的表面通过亚微米间隙与光伏电池表面隔开,该亚微米间隙的尺寸由间隔物保持。与亚微米间隙相对的光伏电池的表面可压缩地抵靠在微通道散热器的表面上,而与光伏电池相对的微通道散热器的表面可压缩地抵靠在平坦的金属板层和可压缩层上。

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