家电科技 ›› 2025, Vol. 0 ›› Issue (zk): 233-236.doi: 10.19784/j.cnki.issn1672-0172.2025.99.048

• 第二部分 制冷与空调 • 上一篇    下一篇

化霜加热器功率及化霜周期对卧式风冷柜的能耗影响研究

张雪梅, 孙彬, 姚书强   

  1. 海信冰箱有限公司 山东青岛 266071
  • 发布日期:2025-12-30
  • 作者简介:张雪梅,硕士学位。研究方向:动力工程及工程热物理。地址:山东省青岛市崂山区松岭路399号。E-mail:zhangxuemei@hisense.com。

Impact of defrost heater power and defrost cycle on energy consumption in air-cooled chest freezer

ZHANG Xuemei, SUN Bin, YAO Shuqiang   

  1. Hisense Refrigerator Co., Ltd. Qingdao 266071
  • Published:2025-12-30

摘要: 依据EN 62552—2020规定的测试方法,对300 L底置蒸发器卧式风冷柜进行了耗电量测试,分析了铝加热器的化霜功率、化霜周期对整机耗电量和化霜增量耗电的影响。结果表明,同等条件下,加热器总功率相同时,相比于单位长度功率23 W/m,25 W/m时整机耗电量降低0.68%~1.02%。同等配置下,最短化霜周期固定为12 h,最长化霜周期48 h比24 h整机耗电量降低2.61%~2.95%,最长化霜周期72 h和96 h比48 h整机耗电量升高0.11%~0.72%和0.02%~0.57%。对于底置蒸发器卧式风冷柜,在保证化霜充分性的基础上,单位长度铝加热器的设计功率尽量大,有助于降低能耗。最长化霜周期48 h的性价比最高。

关键词: 卧式风冷柜, 耗电量, 化霜周期, 铝管加热器

Abstract: This paper studies the energy consumption of a 300L chest freezer with a bottom-mounted evaporator in accordance with the test method specified in EN 62552—2020, and analyzes the impact of defrost power of aluminum tube heater and defrost cycle on the overall energy consumption and defrost incremental energy consumption of the freezer. The results show that under the same conditions, when the total power of the aluminum tube heater is the same, the configuration with a power per unit length of 25 W/m reduces the overall energy consumption by 0.68%~1.02% compared with the configuration of 23 W/m. Under identical configurations, with the shortest defrost cycle fixed at 12 hours, the longest defrost cycles of 48 hours reduce overall unit energy consumption by 2.61%~2.95% compared to a 24 hours cycle. Meanwhile, the longest defrost cycles of 72 hours and 96 hours increase energy consumption by 0.11%~0.72% and 0.02%~0.57% respectively compared to a 48-hour cycle. When selecting the longest defrost cycle, the 48hours option offers the best cost-effectiveness.

Key words: Air-cooled chest freezer, Energy consumption, Defrost cycle, Aluminum tube heater

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