家电科技 ›› 2024, Vol. 0 ›› Issue (zk): 180-183.doi: 10.19784/j.cnki.issn1672-0172.2024.99.037

• 第一部分 优秀论文 • 上一篇    下一篇

空气源热泵热气除霜控制方法研究

冯青龙, 何振健, 曾江毅, 刘钊行   

  1. 珠海格力电器股份有限公司 广东珠海 519070
  • 出版日期:2024-12-10 发布日期:2024-12-31
  • 作者简介:冯青龙,男,工程师。研究方向:制冷空调的研发与应用。E-mail:1328857584@qq.com。

Research on the control method of heat gas defrosting for air-source heat pump

FENG Qinglong, HE Zhenjian, ZENG Jiangyi, LIU Zhaohang   

  1. Gree Electric Appliances, INC. of Zhuhai Zhuhai 519070
  • Online:2024-12-10 Published:2024-12-31

摘要: 空气源热泵冬季制热运行时通常采用逆循环除霜和热气除霜两种除霜方式。与逆循环除霜相比,热气除霜存在除霜时间长导致房间热舒适性差的问题。通过理论分析和试验验证了室外换热器冷表面温度对结霜和除霜的影响,结果表明热气除霜过程中的热量损耗显著高于逆循环除霜。同时,为了更加合理地评价结霜时长和除霜时长的变化,引入了除霜期间房间温度变化的评价指标。以逆循环除霜方式为对照,试验验证了不同除霜策略下结霜时长、除霜时长以及房间热舒适性的变化效果。结果表明,在相同的试验条件下,通过优化热气除霜策略,制热运行时间缩短2.5%~14.9%,除霜时间可缩短10.8%~21.1%;除霜期间房间温降幅度减少0.36 ℃~0.9 ℃,同时,较逆循环除霜方式,房间温降幅度可减小1.76 ℃~1.88 ℃。

关键词: 热气除霜, 除霜时长, 控制策略, 除霜室内侧温降

Abstract: Air-source heat pumps typically use two defrosting methods during winter heating operation: reverse cycle defrosting and hot gas defrosting. Compared to reverse cycle defrosting, hot gas defrosting has the problem of longer defrosting time leading to poor thermal comfort in the room. Through theoretical analysis and experimental verification, the impact of the cold surface temperature of the outdoor heat exchanger on frosting and defrosting was studied. The results showed that the heat loss during the hot gas defrosting process is significantly higher than that of reverse cycle defrosting. At the same time, to evaluate the changes in frosting duration and defrosting duration more reasonably, an evaluation index for room temperature changes during the defrosting period was introduced. Using reverse cycle defrosting as a control, experiments verified the changes in frosting duration, defrosting duration, and room thermal comfort under different defrosting strategies. The results showed that under the same experimental conditions, by optimizing the hot gas defrosting strategy, the heating run time can be shortened by 2.5% to 14.9%, and the defrosting time can be reduced by 10.8% to 21.1%; the room temperature drop during the defrosting period can be reduced by 0.36 ℃ to 0.9 ℃, and compared to reverse cycle defrosting, the room temperature drop can be reduced by 1.76 ℃ to 1.88 ℃.

Key words: Heat gas defrosting, Defrosting length, Control method, Defrosting indoor-temperature drop

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