一种新型便携式水冷热电发电装置的设计与分析

Eric Coday, J. Parker, Randall Johnson, Shawn Duan
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引用次数: 0

摘要

热电发电机技术可以作为一种可再生能源加以利用,具有未开发的潜力。热电发电机(teg)已经被工业专家用来使一些热力学过程稍微更有效率。然而,teg可以以一种独立的方式以更高的效率生产更多的能源。本文介绍了一种新型便携式水冷热电发电装置的设计与分析。该装置可以通过该装置的最佳传热来产生清洁能源。为了减少因内部热阻而损失的能量,该装置由大量的水冷却。太阳辐射是teg的主要热源,用铜箔和高辐射涂料吸收。利用ANSYS对装置运行过程中预测的温度差进行建模。ANSYS传热模型表明,在不超过teg工作参数的情况下,热量吸收和随后传递到水体是可能的。实验结果显示,teg之间120°C的温差产生12.5 V的电。对水冷TEG原型性能的分析表明,发电是可能的,并且该设计有许多应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Analysis of an Innovative Portable Water-Cooled Thermoelectric Generator Apparatus
Thermoelectric generator technology can be utilized as a renewable energy source and has untapped potential. Thermoelectric generators (TEGs) have been used by industry experts to make some thermodynamic processes slightly more efficient. However, TEGs can be operated in a manner that allows for greater energy production at a higher efficiency and in a stand-alone setting. This paper presents design and analysis of an innovative portable water-cooled thermoelectric generator apparatus. The apparatus can create clean energy using optimal heat transfer through the device. To reduce the amount of power lost to internal heat resistance, the device is cooled by a large body of water. Solar irradiation is the primary heat source for the TEGs and is absorbed using copper foil and high emissive paint. The temperature differential predicted during device operation was modeled using ANSYS. The ANSYS heat transfer model revealed that heat absorption and subsequent transfer to a body of water was possible without exceeding the operating parameters of the TEGs. Experimental results revealed that a 120°C temperature difference across the TEGs produced 12.5 V of electricity. Analysis of the water-cooled TEG prototype performance revealed that power production is possible, and the design has numerous applications.
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