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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Parametric optimum design of a near-field electroluminescent refrigerator
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Parametric optimum design of a near-field electroluminescent refrigerator

机译:近场电致发光冰箱的参数优化设计

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摘要

A novel model of the irreversible near-field electroluminescent refrigerator (INFER) composed of an emitter and a receiver is proposed, where the heat transfers between the cold and hot sides and the reservoirs are taken into account. Based on the fluctuation electrodynamics, two critical formulas for the cooling power density (CPD) and cooling coefficient of performance (COP) of the INFER are derived. The optimum thermodynamic characteristics of the INFER are studied. Meanwhile, the effects of the vacuum gap on the performance of the INFER are discussed. By making a trade-off between the CPD and the COP, the parametric optimum design rules are presented. The parametric characteristics for homojunction and heterojunction structures are calculated and compared. An optimum design structure is determined. The results obtained here may provide some guidance for optimally designing and actually developing solid-state refrigerators.
机译:提出了一种由发射器和接收器组成的不可逆近场电致发光冰箱(推断)的新型模型,其中冷热侧和储存器之间的热量转移。 基于波动电动动力学,推导出推测的冷却功率密度(CPD)和冷却系数(COP)的两个关键公式。 研究了推断的最佳热力学特性。 同时,讨论了真空间隙对推断性能的影响。 通过在CPD和COP之间进行权衡,提出了参数化最佳设计规则。 计算和比较同质结和异质结结构的参数特性。 确定了最佳设计结构。 这里获得的结果可以提供一些指导,用于最佳地设计和实际开发固态冰箱。

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