Thermoelectric Energy Harvesting: Basic Principles and Applications

D. Enescu
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引用次数: 74

Abstract

Green energy harvesting aims to supply electricity to electric or electronic systems from one or different energy sources present in the environment without grid connection or utilisation of batteries. These energy sources are solar (photovoltaic), movements (kinetic), radio-frequencies and thermal energy (thermoelectricity). The thermoelectric energy harvesting technology exploits the Seebeck effect. This effect describes the conversion of temperature gradient into electric power at the junctions of the thermoelectric elements of a thermoelectric generator (TEG) device. This device is a robust and highly reliable energy converter, which aims to generate electricity in applications in which the heat would be otherwise dissipated. The significant request for thermoelectric energy harvesting is justified by developing new thermoelectric materials and the design of new TEG devices. Moreover, the thermoelectric energy harvesting devices are used for waste heat harvesting in microscale applications. Potential TEG applications as energy harvesting modules are used in medical devices, sensors, buildings and consumer electronics. This chapter presents an overview of the fundamental principles of thermoelectric energy harvesting and their low-power applications.
热电能量收集:基本原理与应用
绿色能源收集的目的是在没有电网连接或利用电池的情况下,从环境中存在的一种或不同的能源向电力或电子系统供电。这些能源是太阳能(光伏)、运动(动能)、射频和热能(热电)。热电能量收集技术利用了塞贝克效应。这种效应描述了在热电发电机(TEG)装置的热电元件连接处温度梯度转化为电能的过程。这个装置是一个强大的和高度可靠的能量转换器,其目的是产生电力的应用,否则热量会消散。开发新的热电材料和设计新的TEG装置证明了对热电能量收集的重大要求是合理的。此外,热电能量收集装置用于微尺度应用的余热收集。TEG作为能量收集模块的潜在应用可用于医疗设备、传感器、建筑和消费电子产品。本章概述了热电能量收集的基本原理及其低功耗应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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