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首页> 外文期刊>Journal of Electronic Materials >Computational Analysis of a Thermoelectric Generator for Waste-Heat Harvesting in Wearable Systems
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Computational Analysis of a Thermoelectric Generator for Waste-Heat Harvesting in Wearable Systems

机译:可穿戴系统中用于废热收集的热电发电机的计算分析

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摘要

Over recent decades, a constantly growing interest in the field of portable electronic devices has been observed. Recent developments in the scientific areas of integrated circuits and sensing technologies have enabled realization and design of lightweight low-power wearable sensing systems that can be of great use, especially for continuous health monitoring and performance recording applications. However, to facilitate wide penetration of such systems into the market, the issue of ensuring their seamless and reliable power supply still remains a major concern. In this work, the performance of a thermoelectric generator, able to exploit the temperature difference established between the human body and the environment, has been examined computationally using ANSYS 14.0 finite-element modeling (FEM) software, as a means for providing the necessary power to various portable electronic systems. The performance variation imposed due to different thermoelement geometries has been estimated to identify the most appropriate solution for the considered application. Furthermore, different ambient temperature and heat exchange conditions between the cold side of the generator and the environment have been investigated. The computational analysis indicated that power output in the order of 1.8 mW can be obtained by a 100-cm(2) system, if specific design criteria can be fulfilled.
机译:在最近的几十年中,已经观察到对便携式电子设备领域的不断增长的兴趣。集成电路和传感技术的科学领域的最新发展使轻量级低功耗可穿戴传感系统的实现和设计成为可能,这特别有用,特别是对于连续健康监测和性能记录应用而言。然而,为了促进这种系统广泛地进入市场,确保其无缝和可靠的电源供应的问题仍然是主要关注的问题。在这项工作中,使用ANSYS 14.0有限元建模(FEM)软件以计算方式检验了能够利用人体与环境之间建立的温差的热电发电机的性能,以此作为提供必要功率的手段各种便携式电子系统。据估计,由于不同的热电偶几何形状而导致的性能变化,可以为所考虑的应用确定最合适的解决方案。此外,已经研究了发电机的冷侧与环境之间不同的环境温度和热交换条件。计算分析表明,如果可以满足特定的设计标准,则可以通过100 cm(2)系统获得1.8 mW的功率输出。

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