家电科技 ›› 2025, Vol. 0 ›› Issue (zk): 280-283.doi: 10.19784/j.cnki.issn1672-0172.2025.99.059

• 第二部分 制冷与空调 • 上一篇    下一篇

立柜式空调多离子协同净化系统设计与性能研究

郑力鑫, 罗袁伟, 高旭, 贾己晓   

  1. TCL空调器(中山)有限公司 广东中山 528427
  • 发布日期:2025-12-30
  • 作者简介:郑力鑫,学士学位。研究方向:空调健康技术。E-mail:lixin.zheng@tcl.com。

Design and performance study of multi-ion coordinated purification system for cabinet-type air conditioners

ZHENG Lixin, LUO Yuanwei, GAO Xu, JIA Jixiao   

  1. TCL Air Condition (Zhongshan) Co., Ltd. Zhongshan 528427
  • Published:2025-12-30

摘要: 为系统评估立柜式空调多离子模块关键参数对负离子释放特性及颗粒物净化效能的影响,对发射极数量、探头间距、接地方式及双风道结构进行结构、性能、硬件设计以及用户交互等多维度优化研究。结果表明:当模块配置6组负离子发射极且每组发射极并联3个碳刷时,颗粒物去除率达到最高;碳刷间距控制在15 mm~20 mm区间内,负离子数浓度存在峰值;塑料壳体通过导线接地可有效抑制电荷积聚,提高负离子逸出率。在双风道流场协同作用下,负离子浓度理论覆盖面积约45 m²。经第三方权威机构测试,多离子模块2小时PM2.5去除率大于99%。研究结果为高能效空气净化空调负离子模块的工程化设计提供了量化依据。

关键词: 负离子发生器, 探头间距, 负离子发射极, 负离子浓度

Abstract: To systematically evaluate the influence of key parameters of the multi-ion module in the floor-standing air conditioner on the negative ion release characteristics and particulate matter purification efficiency, conduct multi-dimensional optimization research on the structure, performance, hardware design, and user interaction of the emitter quantity, probe spacing, grounding method, and dual air duct structure. The results show that when the module is configured with 6 groups of negative ion emitters and each group of emitters is connected in parallel with 3 carbon brushes, the particulate matter removal rate reaches the highest; when the carbon brush spacing is controlled within the range of 15 mm to 20 mm, the negative ion number concentration reaches a peak; grounding the plastic shell through a wire can effectively suppress charge accumulation and increase the negative ion escape rate. Under the synergistic effect of the dual air duct flow field, the theoretical coverage area of the negative ion concentration is approximately 45 m². After testing by a third-party authoritative institution, the PM2.5 removal rate of the multi-ion module within 2 hours is greater than 99%. The research results provide a quantitative basis for the engineering design of high-efficiency air purification air conditioners with negative ion modules.

Key words: Negative ion generator, Probe spacing, Negative ion emitter, Negative ion concentration

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