热回收和利用热电发电机发电

Luis Vitório Gulineli Fachini, Pedro Leineker Ochoski Machado, L. Krambeck, R. M. Szmoski, T. A. Alves
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引用次数: 3

摘要

在本章中,对热能直接转化为电能进行了实验分析,以鼓励人们有意识地利用能源,减少浪费。热能转化为电能发生在热电发电机通过塞贝克效应。这种效应与在不同温度下接触的两种不同材料之间的电位差的出现有关。这种温度与材料电性能之间的关系被称为热电性。本实验研究的目的是获得热电发电机TEG1-12611-6.0在加热板与散热器之间不同温度梯度和恒压条件下的工作特性曲线。电阻用于加热热电发电机,模拟余热,绝缘材料用于最大限度地减少热量散发到环境中。为了冷却,为了最大限度地提高热电发电机两侧的温差,使用了热交换器。通过这种方式,可以对发电机表面之间不同温度范围内获得的电力进行实验分析,并以此验证其在实际系统中的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Heat Recovery and Power Generation Using Thermoelectric Generator
In this chapter, experimental analysis of the direct conversion of thermal energy into electric energy was carried out, in order to encourage the conscious use of energy and to reduce waste. The conversion of thermal energy into electrical energy occurs in a thermoelectric generator through the Seebeck effect. This effect is associated with the appearance of an electric potential difference between two different materials, placed in contact at different temperatures. This relation between temperature and electrical properties of the material is known as thermoelectricity. This experimental study has as objective the obtaining of operating characteristic curves of the thermoelectric generator TEG1-12611-6.0, for different temperature gradients and under constant pressure between the heater plate and the heat sink. Resistors were used to heat the thermoelectric generator, which simulates the residual heat, and insulation material to minimize the dissipation of heat to the environment. For cooling, a heat exchanger was used in order to maximize the temperature difference between the sides of the thermoelectric generator. In this way, it was possible to perform an experimental analysis of the obtained electric power for different temperature ranges between the faces of the generator and, with this, verify the applicability in real systems.
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