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Thermoelectric Analysis for Helical Power Generation Systems

机译:螺旋发电系统的热电分析

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摘要

The performance of a three-dimensional helical thermoelectric generation (TEG) system is examined by exposing it to a temperature difference with hot and cold sources. The helical paths for the two thermal fluids give the TEG device the potential to efficiently convert thermal energy. The characteristic performance of the helical system is numerically analyzed by using the finite-volume method in a compact system. The helical system is compared with a straight system in which all the thermoelectric (TE) elements present equivalent geometry. The difference in the TE performance between the two systems is not significant when the TE surfaces are maintained at constant temperatures. Both the electromotive force and the current in the TEG system increase linearly with the temperature difference Delta T applied at the two module surfaces. The current preferentially flows through a main path determined by the geometry of the TE element. The merits of the helical design are its compactness, space saving, and smooth fluid flow due to gravity, compared with the straight system.
机译:通过将三维螺旋热电发电(TEG)系统暴露在冷热源的温差下,可以检查该系统的性能。两种热流体的螺旋路径为TEG设备提供了有效转换热能的潜力。在紧凑系统中,使用有限体积方法对螺旋系统的特性进行了数值分析。将螺旋系统与直线系统进行比较,在直线系统中,所有热电(TE)元件都具有相同的几何形状。当TE表面保持恒定温度时,两个系统之间的TE性能差异并不明显。 TEG系统中的电动势和电流都随施加在两个模块表面的温度差Delta T线性增加。电流优先流经由TE元件的几何形状确定的主路径。与直管系统相比,螺旋设计的优点是紧凑,节省空间以及由于重力而使流体流动顺畅。

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