缓冲水箱容量对低环境温度空气源热泵机组性能的影响

作者:曾昱 刘猛 赵密升 李建国 陈微微 张泳洋
单位:重庆大学 广东纽恩泰新能源科技发展有限公司
摘要:在空气源热泵机组性能检测实验室,对2 205、3 675 kW空气源热泵分别采用直供形式、增设100 L缓冲水箱、增设150 L缓冲水箱的性能进行了实验,探究了增设不同容量缓冲水箱及不同运行模式对热水型空气源热泵运行性能的影响。结果表明:在-6℃环境温度工况下,3 675 kW机组增设100、150 L缓冲水箱较直供形式,制热量分别下降9.6%、10.2%,COP分别下降9.5%、9.9%;2 205 kW机组增设100 L缓冲水箱后制热量下降6.3%,COP下降7.0%。较连续运行模式,间歇运行模式2在直供、增设100 L水箱、增设150 L水箱3种情况下,机组制热量分别提升2.5%、4.5%、5.0%,COP分别提升1.8%、3.7%、4.5%。
关键词:空气源热泵缓冲水箱容量低环境温度间歇运行制热量性能系数COP)
作者简介:曾昱,男,1995年生,在读硕士研究生;*刘猛(通信作者)400045重庆市沙坪坝区沙北街83号重庆大学土木工程学院,E-mail:liumeng2033@126.com;
基金:“十三五”国家重点研发计划课题“村镇低品位能供暖技术研究”(编号:2018YFD1100704);
尊敬的用户,本篇文章需要2元,点击支付交费后阅读
参考文献[1] 马晓雪.兰州地区村镇住宅太阳能供暖系统研究[D].兰州:兰州理工大学,2014:54.

[2] 刘冉冉.北方村镇居住建筑双低温源热泵与太阳能互补供暖技术研究[D].济南:山东建筑大学,2018:68.

[3] 李雄志,王汉青,张杰.长沙地区空气源热泵地板采暖系统实测分析[J].制冷与空调,2007,6(7):71- 76.

[4] CHUN W G,JEON M S,LEE Y S,et al.A thermal analysis of a radiant floor heating system[G]//ASHRAE.ASHRAE transactions 1993:part 1.Atanlta:ASHRAE Inc.,1993:23- 34.

[5] QI Y,DU L J,MU Y F,et al.Optimal dispatching of household air-source heat pump heating system considering thermal comfort[J].Energy procedia,2019,159:491- 496.

[6] 黄亚波,王威亚.空气源热泵热水系统在安徽某建筑中的应用[J].建筑热能通风空调,2011,30(3):64- 67.

[7] 何林,曾奕,肖彪,等.空气源热泵在北方煤改电工程中的节能运行试验研究[J].制冷技术,2017,37(3):24- 28.

[8] 南倩.陕西地区居住建筑空气源热泵供暖系统应用研究[D].西安:西安建筑科技大学,2018:66.

[9] 李象龙.低温地板采暖运行控制方式对比分析[J].科技创新导报,2009(14):55.

[10] 中国机械工业联合会.低环境温度空气源热泵(冷水)机组第2部分:户用及类似用途的热泵(冷水)机组:GB/T 25127.2—2010[S].北京:中国建筑工业出版社,2010:6.
Effect of buffer tank capacity on performance of air-source heat pumps at low ambient temperature
Zeng Yu Liu Meng Zhao Misheng Li Jianguo Chen Weiwei Zhang Yongyang
(Chongqing University Guangdong New Energy Technology Development Co., Ltd.)
Abstract: In the performance testing laboratory of air-source heat pump units, the experiments are carried out on the performance of 2 205 kW and 3 675 kW air-source heat pumps with direct supply and 100 L and 150 L buffer tanks respectively to explore the effects of adding different capacity buffer tanks and different operation modes on the operation performance of hot water air-source heat pumps. The results show that when the ambient temperature is-6 ℃, the heating capacity of the 3 675 kW unit adding 100 L and 150 L buffer tank decreases by 9.6% and 10.2% than that of the direct supply, respectively, and the COP decreases by 9.5% and 9.9%, respectively. After the addition of a 100 L buffer tank, the heating capacity of the 2 205 kW unit decreases by 6.3% and COP decreases by 7.0% compared with the direct supply. Compared with the continuous operation mode, the heating capacity of the intermittent operation mode 2 in direct supply, adding 100 L and 150 L buffer tank increases by 2.5%, 4.5% and 5.0%, respectively, and the COP increases by 1.8%, 3.7% and 4.5%, respectively.
Keywords: air-source heat pump; buffer tank; capacity; low ambient temperature; intermittent operation; heating capacity; COP;
804 0 0
文字:     A-     A+     默认 取消