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A review on thermoelectric-hydraulic performance and heat transfer enhancement technologies of thermoelectric power generator system

机译:热电发电系统的热电液压性能及传热增强技术综述

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The thermoelectric material is considered to a good choice to recycle the waste heat in the power and energy systems because the thermoelectric material is a solid-state energy converter which can directly convert thermal energy into electrical energy, especially suitable for high temperature power and energy systems due to the large temperature difference. However, the figure of merit of thermoelectric material is very low, and the thermoelectric power of generator system is even lower. This work reviews the recent progress on the thermoelectric power generator system from the view of heat transfer, including the theoretical analysis and numerical simulation on thermoelectric-hydraulic performance, conventional heat transfer enhancement technologies, radial and flow-directional segmented enhancement technologies for the thermoelectric power generator system. Review ends with the discussion of the future research directions of numerical simulation methods and heat transfer enhancement technologies used for the thermoelectric power generator in high temperature power and energy systems.
机译:热电材料被认为是在电力和能源系统中回收废热的好选择,因为热电材料是一种固态能量转换器,可以将热能直接转换为电能,特别适合于高温电力和能源系统由于温差大。然而,热电材料的品质因数非常低,发电机系统的热电功率甚至更低。这项工作从传热的角度回顾了热电发电系统的最新进展,包括热电-水力性能的理论分析和数值模拟,传统的传热增强技术,热电的径向和流向分段增强技术。发电机系统。回顾结束时讨论了高温电力和能源系统中热电发电机数值模拟方法和传热增强技术的未来研究方向。

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