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供水温度对低温空气源热泵制热性能的影响
吴学红1, 徐帅1, 桂许龙1, 何永宁1, 苟秋平2
0
(1.郑州轻工业学院能源与动力工程学院;2.郑州欧纳尔冷暖科技有限公司)
摘要:
本文通过设置环境温度分别为-12 ℃、-6 ℃,初始水温为20 ℃,开启热泵进行加热,研究了不同供水温度对空气源热泵的制热量、系统功耗、能效、排气温度、压缩比等方面的影响。研究结果表明:在相同的初始水温下,随着加热的进行,压缩机的制热量先增加后降低,供水温度为40 ℃时的制热量最大;当环境温度为-12 ℃,供水温度从25 ℃增至55 ℃时,系统功耗从11 905 W增至24 417 W,增加105%,系统能效从4.03降至2.11,下降47.6%。
关键词:  低温空气源热泵  供水温度  制热量  制热能效
DOI:
Received:May 11, 2018Revised:June 19, 2018
基金项目:国家自然科学基金(51476149)资助项目。
Effect of Water Supply Temperature on the Performance of Low Temperature Air Source Heat Pump System
Wu Xuehong1, Xu Shuai1, Gui Xulong1, He Yongning1, Gou Qiuping2
(1.School of Energy and Power Engineering, Zhengzhou University of Light Industry;2.Zhengzhou Onaer Cold and Warm Technology Co., Ltd.)
Abstract:
In this paper, the effect of the water supply temperature on the thermal performance of a heat pump is analyzed. The influence of the water supply temperature on the performance of a heat pump system is investigated for an ambient temperature ?12 °C and ?6 °C and an initial water supply temperature of 20 ℃. The experimental results indicate that, under the same initial temperature, the heating capacity of the compressor system first increased and then decreased, with a maximum heating capacity reached for a water supply temperature of 40 ℃. When the ambient temperature was at ?12 ℃, the water was heated by the heat pump from 25 ℃ to 55 ℃. The power consumption of the system increased from 11,905 W to 24,417 W, an increase of 105%, and the system energy efficiency decreased from 4.03 to 2.11, a decrease of 47.6%.
Key words:  low temperature air source heat pump  water supply temperature  heating capacity  COP

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