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Waste Heat Recovery For Powering Mobile Devices Using Thermoelectric Generators And Evaporatively-cooled Heat Sink

机译:利用热电发电机和蒸发冷却的散热器为移动设备供电的废热回收

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Powering small electronics like mobile devices off-grid has remained a challenge; hence, there exists a need for an alternate source of powering these devices. This paper examines the efficacy of a novel nanoparticle-immobilized polyethylene wick in maintaining sufficient thermal gradient across a thermoelectric generator to power these devices with energy from waste heat. The work examines several other heat exchangers including heat pipes and loop heat pipe setups. The experimental evidence reveals that the nanoparticle-immobilized polyethylene wick is capable of generating sufficient thermal potential resulting in 5V, which is the minimum voltage required to power small mobile devices. In the opinion of the authors, this is the first ever recorded account of utilizing waste heat to generate enough voltage to power a mobile device. Experiment demonstrated that the nanoparticle-immobilized polyethylene wick showed over 40% thermoelectric voltage generation increment over a plain polyethylenewickandametal wick in a loop heatpipe setup.
机译:离网为移动设备等小型电子设备供电仍然是一个挑战。因此,需要为这些设备供电的替代电源。本文研究了新型纳米粒子固定聚乙烯芯在维持热电发生器上足够的热梯度以利用废热为这些设备提供动力方面的功效。该工作研究了其他几个热交换器,包括热管和回路热管设置。实验证据表明,纳米粒子固定的聚乙烯灯芯能够产生足够的热势,产生5V,这是为小型移动设备供电所需的最低电压。作者认为,这是有史以来第一个记录的利用废热产生足够的电压为移动设备供电的记录。实验证明,在回路热管设置中,纳米粒子固定的聚乙烯芯显示出比普通聚乙烯芯和金属芯超过40%的热电电压产生增量。

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