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Analysis of temperature control effect of composite phase change structure used in thermoelectric conversion system

机译:热电转换系统复合相变结构温度控制效应分析

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In this study, phase change materials made using graphite foam (GF) are placed on the hot side of a thermoelectric generator for thermal control and additional energy output. The experiment results prove the feasibility of this method, and the simulation results indicate a balance between the thermal conductivity and the amount of heat absorption. Compared with GF of 50 W m(-1) K-1, GF of 100 W m(-1) K-1 can produce 47% more electricity, whereas GF of 200 W m(-1) K-1 can produce 69% more electricity, but overheats within 54 s. Overheating will cause various problems and should therefore be avoid. A porosity of 0.9 can produce 71.81% more electricity than a porosity of 0.95, whereas a porosity of 0.8 can produce 114% more electricity, but the material overheats in 79 s. It can thus be predicted that the materials with a change in their composite phase should have a high thermal conductivity and sufficient volume for a temperature control of a thermoelectric generator.
机译:在该研究中,使用石墨泡沫(GF)制造的相变材料置于热电发电机的热侧,用于热控制和额外的能量输出。 实验结果证明了该方法的可行性,仿真结果表明导热率和吸热量之间的平衡。 与50W m(-1)K-1的GF相比,100W m(-1)k-1的GF可以产生47%的电力,而200w m(-1)k-1的GF可以产生69 较高的电力,但在54秒内过热。 过热会导致各种问题,因此应该避免。 孔隙率为0.9的电力比孔隙率为0.95的电力,而0.8的孔隙率可以产生114%的电力,但材料过热79秒。 因此,可以预测其复合阶段变化的材料应该具有高导热率和足够的体积,用于热电发电机的温度控制。

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