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Power enhancement of micro thermoelectric generators by micro fluidic heat transfer packaging

机译:通过微流体传热包装提高微热电发电机的功率

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This paper reports the design, fabrication and proof of concept of a multilayer fluidic packaging system enabling an increase in the output power performance of micro thermoelectric generators (μTEGs). The complete integration of the fluidic heat transfer system (HTS) with a μTEG is successfully demonstrated. The fabricated μHTS prototypes were tested with respect to their heat transfer resistance and consumed pumping power. A heat transfer resistance of 0.48cm2K/W was achieved with a small pumping power of 3.7mW/cm2. This results in a potential μTEG power output enhancement of 38 times at a heat source temperature of 320K, cold side temperature of 300K and a thermoelectric figure of merit (Z) of 1.1×10−3 K−1.
机译:本文报告了多层流体包装系统的设计,制造和概念验证,该系统可提高微型热电发电机(μTEG)的输出功率性能。成功地证明了流体传热系统(HTS)与μTEG的完全集成。对制成的μHTS原型进行了传热阻力和消耗泵浦功率方面的测试。以3.7mW / cm 2 的小泵浦功率实现了0.48cm 2 K / W的传热阻力。这导致在热源温度为320K,冷侧温度为300K和热电性能因数(Z)为1.1×10 -3 K −1

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