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上海理工大学能源与动力工程学院 上海市动力工程多相流动与传热重点实验室 上海 200093
Sheng Jian, male, experimentalist, School of Energy and Power Engineering, University of Shanghai for Science and Technology, 86-15121088972, E-mail: sjhvac@usst.edu.cn. Research fields: special refrigeration and air-conditioning system.
Published:16 December 2024,
Received:30 July 2023,
Revised:19 October 2023,
Accepted:2023-11-02
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JIN LULU, SHENG JIAN, ZHANG HUA. Influence of Electronic Expansion Valve Opening on Performance of Constant-Temperature and -Humidity Cabinets. [J]. Journal of refrigeration, 2024, 45(6): 145-151.
JIN LULU, SHENG JIAN, ZHANG HUA. Influence of Electronic Expansion Valve Opening on Performance of Constant-Temperature and -Humidity Cabinets. [J]. Journal of refrigeration, 2024, 45(6): 145-151. DOI: 10.12465/j.issn.0253-4339.2024.06.145.
节流装置的调节对恒温恒湿箱系统性能具有重要影响。基于恒温恒湿箱定频制冷系统,实验研究了不同目标工况下电子膨胀阀(EEV)开度(10%~30%)对蒸发器过热度、压缩机排气温度、蒸发器翅片温度及箱内温湿度的影响。结果表明:EEV开度为15%~30%时,可保证过热度(8~15 ℃)和排气温度在安全合理范围内;EEV开度为20%以下时,设置旁通毛细管,使压缩机吸气带液冷却而安全运行;低温低湿和高温高湿工况下,较大开度使温湿度调节时间缩短10~20 min,低温高湿和高温低湿工况下,较大开度造成额外湿补偿或热补偿的能耗并延长温湿度调节时间;不同目标工况下,小开度(15%)相比大开度(25%、30%)箱内的相对湿度和干球温度更趋近目标温湿度,温湿度控制精度更高。
The regulation of the throttling device has an important impact on the performance of constant-temperature and humidity cabinets. Based on a constant-frequency refrigeration system
the effects of EEV (electronic expansion valve) opening from 10% to 30% on the evaporator superheat
compressor discharge temperature
evaporator fin temperature
and temperature and humidity in the cabinet under different target conditions were experimentally studied. When the opening of the electronic expansion valve is 15%-30%
the superheat (8-15 ℃) and discharge temperature can be guaranteed in safe and reasonable ranges. When the opening of the electronic expansion valve is below 20%
a bypass capillary tube is set for a safe compressor operation with liquid cooling in suction. Under the conditions of low temperature and humidity and high temperature and humidity
the larger opening reduces the temperature and humidity adjustment time by 10-20 min. Under the conditions of a low temperature and high humidity and a high temperature and low humidity
the larger opening causes energy consumption for additional humidity compensation or thermal compensation and prolongs the temperature and humidity adjustment time. Under different target conditions
the relative humidity and dry bulb temperature in the small opening (15%) cabinet are closer to the target temperature and humidity than those for the large opening (25%
30%)
and the temperature and humidity control accuracy is higher.
恒温恒湿箱电子膨胀阀过热度排气温度
constant temperature and humidity cabinetelectronic expansion valvesuperheatexhaust temperature
李程伟. 基于模糊控制的医用恒温恒湿系统的研究及应用[D]. 广州: 华南理工大学, 2012. (
LI Chengwei. The simulation research and application of fuzzy optimization control in a medical Temperature-Humidity[D]. Guangzhou: South China University of Technology, 2012.)
李佳, 张华. 高低温试验箱制冷系统最佳制冷剂充注量研究[J]. 制冷技术, 2015, 35(4):11-16. (
LI Jia, ZHANG Hua. Research on best refrigerant charges in refrigeration system of high and low temperature test chamber[J]. Chinese Journal of Refrigeration Technology, 2015, 35(4):11-16.)
李敏华, 欧阳惕, 原志锋, 等. 一种新型恒温恒湿机的研制[J]. 制冷与空调(四川), 2013, 27(3):275-279. (
LI Minhua, OUYANG Ti, YUAN Zhifeng, et al. Development of a new type constant temperature and humidity unit[J]. Refrigeration & Air Conditioning, 2013, 27(3):275-279.)
田茹, 赵勇. 恒温恒湿箱的创新设计[J]. 机电产品开发与创新, 2010, 23(2):148-150. (
TIAN Ru, ZHAO Yong. Innovation design constant temperature and humidity box[J]. Development & Innovation of Machinery & Electrical Products, 2010, 23(2):148-150.)
彭喜姣. 电子膨胀阀在定频制冷系统上的应用[J]. 中国新技术新产品, 2016(14): 55-57. (
PENG Xijiao. Application of electronic expansion valve in fixed-frequency refrigeration system[J]. China New Technologies and New Products, 2016(14): 55-57.)
胡朝发, 陈华康, 汪俊勇. 电子膨胀阀和毛细管在定频空调器中的应用分析[J]. 制冷与空调(北京), 2015, 15(12):17-20. (
HU Chaofa, CHEN Huakang, WANG Junyong. Application analysis of electronic expansion valve and capillary in fixed frequency air conditioner[J]. Refrigeration and Air-conditioning, 2015, 15(12):17-20.)
赵原, 俞炳丰. 空调器多路毛细管组合节流及其模糊控制[J]. 流体机械, 1995, 23(10): 46-50. (
ZHAO Yuan, YU Bingfeng. Multi-channel capillary combination throttle and its fuzzy control[J]. Fluid Machinery, 1995, 23(10):46-50.)
崔海亭, 刘东岳, 赵华丽, 等. CO2热泵热水器多毛细管组合节流特性的研究[J]. 流体机械, 2017, 45(3):65-68. (
CUI Haiting, LIU Dongyue, ZHAO Huali, et al. Study on throttling characteristic of multiple capillary combination usedin CO2 heat pump water heater[J]. Fluid Machinery, 2017, 45(3) :65-68.)
KNABBEN F T, RONZONI A F, HERMES C J L. 电子膨胀阀在家用冰箱中的应用[J]. 家电科技, 2021(1):11-12. (
KNABBEN F T, RONZONI A F, HERMES C J L. Application of electronic expansion valves in domestic refrigerators[J]. Journal of Appliance Science & Technology, 2021(1):11-12.)
邓雅静. 电子膨胀阀: 市场规模快速提升, 商用市场前景可期[J]. 电器, 2021(11):14-15. (
DENG Yajing. Electronic expansion valve: the market scale is increasing rapidly rapidly, the commercial market prospect is promising[J]. China Appliance, 2021(11):14-15.)
郝文洋, 张华, 盛健. 恒温恒湿箱内电子膨胀阀替代毛细管的可行性研究[J]. 制冷技术, 2021, 41(3): 62-66. (
HAO Wenyang, ZHANG Hua, SHENG Jian. Feasibility study on electronic expansion valve substituting for capillary tube in constant temperature and humidity cabinet[J]. Chinese Journal of Refrigeration Technology, 2021, 41(3): 62-66.)
盛健, 向振之, 张华, 等. 恒温恒湿箱定频制冷压缩机吸气喷液实验研究[J]. 低温与超导, 2019, 47(2): 74-78. (
SHENG Jian, XIANG Zhenzhi, ZHANG Hua, et al. Experimental study on liquid injection cooling in constant speed refrigeration compressor in constant temperature and humidity cabinet[J]. Cryogenics & Superconductivity, 2019, 47(2): 74-78.)
臧润清, 方筝, 李景丽, 等. 恒温恒湿机在结霜工况下运行的实验研究[J]. 低温工程, 2005(3):60-64. (
ZANG Runqing, FANG Zheng, LI Jingli, et al. Experimental study on the performance of the unit with constant temperature and humidity under frosting conditions[J]. Cryogenics, 2005(3):60-64.)
ELLIOTT M S, RASMUSSEN B P. On reducing evaporator superheat nonlinearity with control architecture[J]. International Journal of Refrigeration, 2010, 33(3): 607-614.
黄俊锋, 苏林, 方奕栋, 等. 电子膨胀阀对蒸发器出口过热度的控制改进研究[J]. 能源工程, 2018(3):64-69. (
HUANG Junfeng, SU Lin, FANG Yidong, et al. An improved control for evaporator outlet superheat by electronic expansion valve[J]. Energy Engineering, 2018(3):64-69.)
俞彬彬, 王丹东, 陈江平. 出口过热度对CO2微通道蒸发器性能的影响[J]. 制冷学报, 2018, 39(3):31-38. (
YU Binbin, WANG Dandong, CHEN Jiangping. Effect of superheat on the performance of CO2 micro-channel evaporator[J]. Journal of Refrigeration, 2018, 39(3):31-38.)
李文清. 电子膨胀阀的性能特性分析[D]. 天津: 天津商业大学, 2020. (
LI Wenqing. Performance analysis of electronic expansion valve[D]. Tianjin: Tianjin University of Commerce, 2020.)
张明, 周智, 周国鹏, 等. 一种自适应分段式电子膨胀阀控制策略研究[J]. 流体机械, 2020, 48(6):14-19. (
ZHANG Ming, ZHOU Zhi, ZHOU Guopeng, et al. A self-adaptive segmented control strategy of electronic expansion valve[J]. Fluid Machinery, 2020, 48(6):14-19.)
朱瑞琪, 杨亮, 景战杰, 等. 以压缩机排气温度为控制参数的电子膨胀阀流量控制系统研究[C]//第九届全国冷水机组与热泵技术学术会议论文集. 青岛:中国制冷学会, 1999:4-5. (
ZHU Ruiqi, YANG Liang, JING Zhanjie, et al. Study on the flow control system of electronic expansion valve with compressor exhaust temperature as the control parameter[C]//Proceedings of the 9th National Academic Conference on Chiller and Heat Pump Technology. Qingdao: Chinese Association of Refrigeration, 1999:4-5.)
昝世超, 袁旭东, 吴俊峰, 等. 基于吸气喷液的制冷系统热力性能理论研究[J]. 制冷与空调(北京), 2022, 22(1):24-28. (
ZAN Shichao, YUAN Xudong, WU Junfeng, et al. The oretical research on thermodynamic performances of refrigeration system based on suction injection[J]. Refrigeration and Air-conditioning, 2022, 22(1):24-28.)
黄志刚, 冯静娅, 黎顺全. 变频空调器性能影响因素的正交试验研究[J]. 日用电器, 2020, 172(4):34-37. (
HUANG Zhigang, FENG Jingya, LI Shunquan. Study on the factors influencing the performance of variable frequency air conditioner based on orthogonal experiment[J]. Electrical Appliance, 2020, 172(4): 34-37.)
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