家电科技 ›› 2024, Vol. 0 ›› Issue (5): 74-78.doi: 10.19784/j.cnki.issn1672-0172.2024.05.011

• 论文 • 上一篇    下一篇

家用落地式空调L型换热器设计

黄汝普1,2, 肖久旻2, 邵艳坡2, 邹大枢1,2, 黄东1   

  1. 1.西安交通大学制冷与低温工程系 陕西西安 710049;
    2.广东美的制冷设备有限公司 广东佛山 528311
  • 出版日期:2024-10-01 发布日期:2024-10-16
  • 通讯作者: 黄东,E-mail:d_huang@mail.xjtu.edu.cn。
  • 作者简介:黄汝普,硕士学位。研究方向:制冷空调技术。地址:广东省佛山市顺德区北滘镇林港路。E-mail:huangrp@midea.com.cn。

L-type heat exchanger design for domestic floor standing air conditioner

HUANG Rupu1,2, XIAO Jiumin2, SHAO Yanpo2, ZOU Dashu1,2, HUANG Dong1   

  1. 1. Department of Refrigeration & Cryogenic Engineering, Xi’an Jiaotong University Xi’an 710049;
    2. Guangdong Midea Refrigeration Equipment Co., Ltd. Foshan 528311
  • Online:2024-10-01 Published:2024-10-16

摘要: 目前家用落地式空调内机主要采用圆柱形外观,产品不断向小型化、高能效发展。针对圆柱形柜机的内机换热器进行设计,采用L型结构,借助CFD仿真确定换热器夹角,采用Midea Heat Exchanger仿真软件选择合适的制冷剂流路,最终制作换热器样件与原型机进行整机性能对比。结果表明,L型换热器夹角为80°时既有较高风量,又有足够的换热面积确保较高的换热量;在不同的制冷剂流路布置中,6支路对应的换热量最大,制冷剂分布均匀性和空气侧温度均匀性最佳;相比原型机,L型换热器额定制冷工况下的风量提升13.4%,额定制热工况下的风量提升10.8%,整机APF提升0.146。

关键词: 落地式空调, 翅片管换热器, 换热器夹角, 流路布置

Abstract: Currently, the indoor unit of the domestic floor standing air conditioner commonly adopts the cylindrical appearance, and the products are constantly developing to miniaturization and high energy efficiency. Focuse on the indoor heat exchanger design of the cylindrical floor standing air conditioner, the L-type structure is used for the heat exchanger, the angle of the heat exchanger is determined by CFD simulation, the Midea Heat Exchanger simulation software is used to select a suitable refrigerant circuitry and finally a heat exchanger sample for overall performance comparison with the prototype machine is produced. Results show that when the angle of L-type heat exchanger is 80°, there is both higher air volume and sufficient heat exchange area to ensure higher heat transfer capacity. Among the different refrigerant circuitry, the circuitry with 6 branches has the highest capacity, and the uniformity of refrigerant distribution and airside temperature distribution are the best. Compared with the prototype, the air volume flow rate of L-type heat exchanger under rated cooling condition increases by 13.4%, and that under rated heating condition increases by 10.8%. The APF of the overall system increases by 0.146.

Key words: Floor standing air conditioner, Fin-tube heat exchanger, Angle of heat exchanger, Circuitry arrangement

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