家电科技 ›› 2019, Vol. 0 ›› Issue (3): 85-89.doi: 10.19784/j.cnki.issn1672-0172.2019.01.0014

• 论文 • 上一篇    下一篇

基于紧凑型设计5mm翅片管式换热器的数值模拟及分析

李成恩, 何哲旺, 武滔, 唐华   

  1. 广东美的制冷设备有限公司 广东佛山 528311
  • 出版日期:2019-06-01 发布日期:2019-07-03

Simulation and analysis of 5mm finned tube heat exchanger based on compact design

LI Chengen, HE Zhewang, WU Tao, TANG Hua   

  1. Guangdong Midea Refrigeration Equipment CO., LTD Foshan 528311
  • Online:2019-06-01 Published:2019-07-03

摘要: 本文主要研究片距对翅片管式换热器空气侧换热性能和压降的影响。目前5mm管径的翅片片距通常处于1.2mm~1.3mm之间,通过紧凑式设计加工方法可以使其片距减少至0.8mm~1.0mm。论文主要从理论分析、三维建模以及Fluent计算来进行分析对比翅片片距的减少对换热能力和空气压损两个方面的影响。相同的迎风面积和风速下,随着片距的减小,能力逐渐升高,但同时压损和功率增加,说明片距减少的同时,必须得解决翅片加密导致的风量下降问题,有效评估分析接触热阻的影响,否则换热面积不能充分利用,此研究可以为换热器翅片设计提供一些参考。

关键词: 翅片片距, 翅片管式换热器, 紧凑型设计, 换热性能, 空气压损

Abstract: The effect of fin spacing on the heat transfer performance and pressure drop of fin and tube heat exchangers is studied in this paper. At present, the fin spacing of 5mm diameter is usually between 1.2mm and 1.3mm. The fin spacing can be reduced to 0.8mm to 1.0mm by means of compact design and machining. This paper mainly analyzes and compares the influence of fin pitch reduction on heat transfer capability and air pressure loss from theoretical analysis, three-dimensional modeling and fluent calculation. Under the same windward area and wind speed, with the decrease of fin spacing, the capacity increases gradually, but the pressure loss and power increase at the same time. It shows that the problem of air loss caused by fin infilling must be solved at the same time when the fin spacing decreases, effectively analyze the influence of contact thermal resistance. Otherwise, the heat transfer area can’t be fully utilized. This study can provide some references for fin design of heat exchangers.

Key words: Fin distance, Finned tube heat exchanger, Compact design method, Heat transfer performance, Air pressure loss