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喷气增焓空气源热泵补气量对系统性能的影响
冉小鹏1, 翟晓强1, 骆琼2
0
(1.上海交通大学机械与动力工程学院;2.靖江市春意空调制冷设备有限公司)
摘要:
空气源热泵低温下会产生压比大、排气温度高、循环性能差等问题,喷气增焓EVI(enhanced vapor injection)技术可以改善空气源热泵在低温下的运行特性。本文首先建立了EVI空气源热泵的数值仿真模型,并搭建了实验台对仿真实验数据进行验证。随后在此模型的基础上对带EVI的空气源热泵系统的补气运行特性进行了数值模拟。结果表明:带EVI的空气源热泵系统存在最佳相对补气量,可使系统运行最优,当环境温度低于-6 ℃时,最佳补气量为8%~10%;当环境温度为-6~0 ℃时,最佳补气量为5%~8%;当环境温度高于0 ℃,最佳补气量为4%~5%。在最佳补气量下,各个工况的相对补气压力在0.7~0.9之间。在最佳补气参数条件下,系统制热量最高提了33%,能效最高提升31%。
关键词:  空气源热泵  喷气增焓  补气量  模拟优化
DOI:
投稿时间:2018-07-14  修订日期:2018-10-14  
基金项目:泰州市“双创计划”项目资助。
Effect of Vapor-injection Mass on System Performance of Air-source Heat Pump with Enhanced Vapor Injection
Ran Xiaopeng1, Zhai Xiaoqiang1, Luo Qiong2
(1.School of Mechanical Engineering, Shanghai Jiao Tong University;2.Jingjiang Chun Yi Air Conditioning and Refrigeration Equipment Co., Ltd.)
Abstract:
Air-source heat pumps suffer from many problems such as high pressure ratio, high discharge temperature, and poor performance at low temperature. The enhanced vapor injection (EVI) technology can improve the performance of an air-source heat pump at low temperature. This study sets up a numerical simulation model of an air-source heat pump system to investigate with the effect of EVI. A test bed is designed to verify the simulation model. The performance of the air-source heat pump with EVI is simulated based on the model. The results demonstrate that an optimal relative vapor-injection mass exists that achieves the highest system energy efficiency. The best range of relative vapor-injection mass is 8%–10% for the best heating performance when the environment temperature is lower than ?6 ℃. The best range of relative vapor-injection mass is 5%–8% when the environment temperature is from ?6 to 0 ℃. The best range of relative vapor-injection mass is 4%–5% when the environment temperature is higher than 0 ℃. The corresponding optimal relative vapor-injection pressure is between 0.7 and 0.9. The heating capacity increases by 33%, and the coefficient of performance increases by 31% under optimal air-injection parameters.
Key words:  air-source heat pump  enhanced vapor injection(EVI)  vapor injection mass  numerical simulation

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