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Ultra-high performance wearable thermoelectric coolers with less materials

机译:更少材料的超高性能可穿戴热电冷却器

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Thermoelectric coolers are attracting significant attention for replacing age-old cooling and refrigeration devices. Localized cooling by wearable thermoelectric coolers will decrease the usage of traditional systems, thereby reducing global warming and providing savings on energy costs. Since human skin as well as ambient air is a poor conductor of heat, wearable thermoelectric coolers operate under huge thermally resistive environment. The external thermal resistances greatly influence thermoelectric material behavior, device design, and device performance, which presents a fundamental challenge in achieving high efficiency for on-body applications. Here, we examine the combined effect of heat source/sink thermal resistances and thermoelectric material properties on thermoelectric cooler performance. Efficient thermoelectric coolers demonstrated here can cool the human skin up to 8.2?°C below the ambient temperature (170% higher cooling than commercial modules). Cost-benefit analysis shows that cooling over material volume for our optimized thermoelectric cooler is 500% higher than that of the commercial modules.
机译:热电冷却器在替换陈旧的冷却和制冷设备方面引起了广泛的关注。可穿戴热电冷却器的局部冷却将减少传统系统的使用,从而减少全球变暖并节省能源成本。由于人的皮肤以及周围的空气都是不良的热导体,因此可穿戴式热电冷却器在巨大的耐热环境下运行。外部热阻极大地影响了热电材料的性能,器件设计和器件性能,这对实现人体应用的高效率提出了根本性的挑战。在这里,我们研究了热源/散热器热阻和热电材料性能对热电冷却器性能的综合影响。这里展示的高效热电冷却器可以将人体皮肤的温度降低到环境温度以下8.2?C(比商用模块高170%的冷却)。成本效益分析表明,我们优化的热电冷却器在材料体积上的冷却比商用模块高500%。

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