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A modeling comparison between a two-stage and three-stage cascaded thermoelectric generator

机译:两级和三级串联热电发电机的建模比较

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In this work, a comparison between the performance of two- and three-stage cascaded thermoelectric generator (TEG) devices is analyzed based on a prescribed maximum hot side temperature of 973 K, an imposed maximum heat input of 505 W, and a fixed cold side temperature of 473 K. Half-Heusler is used as a thermoelectric (TE) material in the top higher temperature stage and skutterudite as a TE in the bottom lower temperature stage for the two-stage structure. Lead telluride is added in the middle stage to form the three-stage structure. Based on the prescribed constraints, the two-stage cascaded TEG is found to produce a power output of 42 W with an efficiency of 8.3%. The three-stage cascaded TEG produces a power output of 51 W with an efficiency of 10.2%. The three-stage cascaded TEG produces 21% more power than the two-stage does; however, if the system complexity, mechanical robustness, manufacturability, and/or cost of three-stage cascaded TEG outweigh the 21% percent power production increase, the two-stage TEG could be preferable. (C) 2017 Elsevier B.V. All rights reserved.
机译:在这项工作中,基于规定的最高热侧温度973 K,施加的最大热输入505 W和固定的冷量,分析了两级和三级热电发电机(TEG)设备的性能比较。最高温度为473K。对于两级结构,Half-Heusler在顶部较高的温度阶段用作热电(TE)材料,而skutterudite在底部较低温度的阶段用作TE的热电材料。在中间阶段添加碲化铅以形成三阶段结构。根据规定的约束条件,发现两级级联的TEG可产生42 W的功率输出,效率为8.3%。三级级联TEG产生51 W的功率输出,效率为10.2%。三级串级TEG的功率比两级级多21%。但是,如果三级联式TEG的系统复杂性,机械强度,可制造性和/或成本超过21%的发电量增长,则两级TEG可能更可取。 (C)2017 Elsevier B.V.保留所有权利。

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