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Pulse Shape Effects in Electrocaloric Cooling

机译:电热冷却中的脉冲形状效应

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摘要

We report on the solution of the heat equation, which describes the electrocaloric effect in a ferroelectric layer. The dependence of the heat flux at the layer interface and the thermodynamic efficiency on the shape and frequency of the applied pulse is investigated. According to the calculations, the dependence of the efficiency on the frequency for a rectangular and sinusoidal pulse has a markedly different character. The maximum efficiency at 0.74 is achieved by a sinusoidal impulse at a frequency of 77.6 mHz. The new approach allows for better optimization of the cooling system. To model a heat switch, it is proposed to use a change in the Biot number over time. Theoretical calculations are compared with experimental results for a 0.5-mm-thick barium titanate plate. The maximum heat flux that can be created for a given plate under an electric field of 2 MV/m with an ideal heat switch turned out to be equal 120.72 W/m(2).
机译:我们报告了热方程的解,其描述了铁电层中的电热量效应。研究了热通量在层界面处的依赖性和对施加脉冲的形状和频率的热力学效率。根据计算,效率对矩形和正弦脉冲的频率的依赖性具有明显不同的特征。 0.74的最大效率是通过频率为77.6MHz的正弦脉冲实现。新方法允许更好地优化冷却系统。为了模拟热开关,建议随着时间的推移使用Biot数的变化。将理论计算与0.5mm厚的钛酸钡板的实验结果进行了比较。可以在2mV / m的电场下为给定板材产生的最大热通量,其理想的热开关转向等于120.72W / m(2)。

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