氮化镓功率变换器在电热热泵样机及卡诺循环中的应用

S. Moench, R. Reiner, Kareem Mansour, M. Basler, P. Waltereit, R. Quay, K. Bartholomé
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引用次数: 3

摘要

首次将99%效率的功率转换器应用于电热热泵样机,实现了电热电容器的循环电场变化,提高了热泵的性能。电热效应是电场变化引起的特殊介质中几乎完全可逆的温度变化。GaN功率变换器通过零电压开关滞回电流控制实现了高效率。商业多层陶瓷电容器块,表现出热效应,有效地充电和放电,同步接触散热器和源的执行器,这形成了一个热泵原型。布雷顿循环是由梯形电压引起的。然后,通过与散热器接触时测量到的几乎恒定的热通量,证明了具有准等温传热的类卡诺循环的任意电压(e场)变化。文献中的电热热泵原型的性能受到LC谐振电路损耗的限制,而这项工作将其性能提高了15.5倍。这项工作证明了电热量作为一种新兴的电力电子应用,有助于实现未来高效、无排放、固态和电热量热泵系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
GaN Power Converter Applied to Electrocaloric Heat Pump Prototype and Carnot Cycle
A 99% efficient power converter is applied to an electrocaloric heat pump prototype for the first time, enabling cyclic electrical field variation in electrocaloric capacitors and high heat pump performance. The electrocaloric effect is an almost fully reversible temperature change in special dielectrics caused by changed electrical field. The GaN power converter achieves high efficiency by zero-voltage switching hysteretic current control. Blocks of commercial multi-layer ceramic capacitors which exhibit an electrocaloric effect are efficiently charged and discharged, synchronized to contacting to a heat sink and source by actuators, which forms a heat pump prototype. Brayton cycles are caused by trapezoidal voltage. Then, arbitrary voltage (E-field) variation for Carnot-like cycles with quasi-isothermal heat transfer is demonstrated and verified by the measured almost constant heat flux during contact to the heat sink. The performance of electrocaloric heat pump prototypes in literature was limited by losses of LC resonant circuits, and is improved by an up to 15.5-fold decrease by this work. The work demonstrates electrocalorics as an emerging power electronics application and contributes to realize future efficient and emission-free, solid state, and electrocaloric heat pump systems.
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