Design and Experimental Investigation of Thermoelectric Generators for Wearable Applications

热电发电机 散热片 热阻 材料科学 自然对流 热电效应 建构律 机械工程 热的 计算机科学 汽车工程 核工程 机械 对流 热力学 传热 物理 工程类
作者
Yun Goo Lee,Junsoo Kim,Min‐Su Kang,Seung‐Hyub Baek,Seong Keun Kim,Seung Min Lee,Jae Wook Lee,Dow‐Bin Hyun,Byeong‐Kwon Ju,Seung Eon Moon,Jin‐Sang Kim,Beomjin Kwon
出处
期刊:Advanced materials and technologies [Wiley]
卷期号:2 (7) 被引量:37
标识
DOI:10.1002/admt.201600292
摘要

A critical challenge in using thermoelectric generators (TEGs) for charging the portable or wearable electronics has been their limited outputs, as available temperature differential on human body (∆ T ext ) is typically less than 10 K. Furthermore, the thermal resistance ( R th ) at the TEG–air interface often overwhelms R th of TEG itself, which makes the temperature differential within the TEG merely a small fraction of ∆ T ext . Here, the designs of TEG systems for wearable applications based both on theory and systematic experiments are studied. First, this study fabricates the TEGs having different fill factors (equivalently, varied internal R th of the TEGs) and finds an optimum fill factor that is determined by both thermal matching condition and the electrical contact resistance. Next, to investigate the effects of heat sink and external air flow, this study combines plate fin heat sinks with the TEGs and evaluates their performance under three different convection conditions: natural convection, and convection with either parallel or impinging flow. Lastly the effect of R th at the skin–TEG interface is studied. Although the TEG system produces an output power of 126 µW cm −2 (∆ T ext = 7 K) on a smooth heat source (Cu heater), it generates reduced power of 20 µW cm −2 (∆ T ext = 6 K) on wrist (uneven heat source).

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