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A novel heat pump system using a multi-stage Knudsen compressor

机译:使用多级Knudsen压缩机的新型热泵系统

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摘要

A novel heat pump system is proposed using a multi-stage Knudsen compressor in the cycle between the evaporator and condenser. The proposed Knudsen heat pump is driven by thermal energy, and it is able to utilize waste heat. There are no moving parts in a Knudsen compressor, leading to several advantages, including a lack of vibration and noise, and high durability. In this study, the configuration necessary to achieve a performance such that it can be used as a practical heat pump (output power 1 kW, temperature difference 6 K) is considered. The performance of this heat pump is predicted by a one-dimensional analytical model coupled with a simple experimental result. This method is based on our previously constructed method to predict the performance of a multi-stage Knudsen compressor, and the evaporation and condensation and the time variations of temperature in the evaporator and condenser are newly considered. A heat pump with a 30-stage Knudsen compressor using glass-fiber filters with an area of 4.00 m(2) is predicted to generate an output power of 1.27 kW and a temperature difference of 6.00 K. (C) 2018 Elsevier Ltd. All rights reserved.
机译:提出了一种新颖的热泵系统,该系统在蒸发器和冷凝器之间的循环中使用多级Knudsen压缩机。提议的Knudsen热泵由热能驱动,并且能够利用废热。努德森压缩机中没有活动部件,因此具有多个优点,包括缺少振动和噪音以及耐用性高。在这项研究中,考虑了实现某种性能所需的配置,使其可以用作实际的热泵(输出功率> 1 kW,温差> 6 K)。该热泵的性能通过一维分析模型和简单的实验结果进行预测。该方法基于我们先前构建的预测多级Knudsen压缩机性能的方法,并且新考虑了蒸发和冷凝以及蒸发器和冷凝器中温度的时间变化。使用面积为4.00 m(2)的玻璃纤维过滤器的具有30级Knudsen压缩机的热泵预计将产生1.27 kW的输出功率和6.00 K的温差。(C)2018 Elsevier Ltd.全部版权所有。

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