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Publishing Language: Chinese | Open Access

Performance Simulation of Open-loop Air Cycle Heat Pump Drying System

Binfei Zhan1,2Zhichao Wang1,2( )Yu Sun3Ce Xu1,2Shuangquan Shao4Zhaowei Xu1,2Yingxia Yang1,2
State Key Laboratory of Building Safety and Built Environment, Beijing, 100013, China
China Academy of Building Research, Beijing, 100013, China
CAS Key Laboratory of Cryogenics, Technical Institute of Physics and Chemistry, Beijing, 100190, China
School of Energy and Power Engineering, Huazhong University of Science and Technology, Wuhan, 430074, China
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Abstract

In contrast with the conventional drying technology, a novel air cycle heat pump drying (ACHPD) system, which uses air as its working medium, is proposed to solve the problems of low energy efficiency and eliminate the use of HCFCs/HFCs. A simulation model is established, and its verification via experimental results from a constructed test bench indicates errors of the drying rate within ±0.01% and the system power within ±7%. Compared with a conventional electric heater drying (EHD) system, the energy-saving rate of the ACHPD system reaches 15%-27% when the water evaporation rate increases from 0.75 kg/h to 3.45 kg/h. The increase of the inlet air temperature is 10-40 ℃ and the relative humidity is 30%-80%, which reduces the moisture extraction ratio (MER) by approximately 7% and 21%, respectively. The efficiency improvements of the expander and compressor are 0.55-0.8 and 0.4-0.9, respectively, which can deteriorate the energy efficiency of the system by 17% and 36%, respectively. The research results provide new technical references for the application of heat pump technology in the drying field.

CLC number: TB657.5; TK124 Document code: A Article ID: 0253-4339(2024)02-0101-08

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Journal of Refrigeration
Pages 101-108

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Cite this article:
Zhan B, Wang Z, Sun Y, et al. Performance Simulation of Open-loop Air Cycle Heat Pump Drying System. Journal of Refrigeration, 2024, 45(2): 101-108. https://doi.org/10.3969/j.issn.0253-4339.2024.02.101

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Received: 12 January 2023
Revised: 17 February 2023
Accepted: 23 April 2023
Published: 16 April 2024
© 2024 The Editorial Office of Journal of Refrigeration

This is an open access article under the terms of the Creative Commons Attribution 4.0 International License (CC BY 4.0, http://creativecommons.org/licenses/by/4.0/).