家电科技 ›› 2023, Vol. 0 ›› Issue (1): 118-121.doi: 10.19784/j.cnki.issn1672-0172.2023.01.021

• 论文 • 上一篇    下一篇

多联机配管长度在线评估算法及实验验证

任滔1,2   

  1. 1.海尔(上海)家电研发中心有限公司 上海 200000;
    2.青岛海尔空调电子股份有限公司 山东青岛 266000
  • 出版日期:2023-02-01 发布日期:2023-04-24
  • 作者简介:任滔,博士学位。研究方向:制冷系统节能及优化。地址:上海市闵行区申长路668号3层。E-mail:rent1@haier.com。
  • 基金资助:
    青岛市科技惠民示范专项项目“中央空调系统智慧节能技术研究与应用示范”资助

Algorithm of suction line length online evaluation for multi-unit air conditioners and experimental validation

REN Tao1,2   

  1. 1. Haier (Shanghai) Home Appliance R&D Center Co., Ltd. Shanghai 200000;
    2. Qingdao Haier Air Conditioning Electronics Co., Ltd. Qingdao 266000
  • Online:2023-02-01 Published:2023-04-24

摘要: 结合多联机的配管长度调整吸气压力和回油频率控制策略,可以有效提高多联机的运行能效,因此在多联机运行时需要能够在线获取联机配管长度。提出了一种多联机配管长度的在线评估算法,包括利用基于等熵效率的压缩机广义热平衡法迭代计算系统制冷剂的循环量;理论推导了多联机配管等效长度的计算方法,并结合实验数据,开发了配管长度与等效长度的关联式。实验结果表明,利用配管长度的在线评估算法,在全负荷和部分负荷条件下均可以有效区分长短配管,90%以上的工况点配管长度计算误差小于20%。

关键词: 多联机, 配管, 压降, 模型, 评估

Abstract: The operational energy efficiency of multi-unit air conditioner can be effectively improved by adjusting the control strategies of suction pressure and oil return frequency combined with suction line length, so it is necessary to be able to obtain the suction line length online during the operation of multi-unit air conditioners. An online evaluation algorithm for suction line length of multi-unit air conditioners is proposed, where a generalized heat balance method for compressor based on isentropic efficiency is established to iteratively calculate the mass flow rate of refrigerant, a method of the equivalent length of suction line was theoretically derived, and the correlation between the suction length and equivalent length was developed based on experimental data. The experimental results show that the online evaluation algorithm of suction line length can effectively distinguish between long and short piping under full load and partial load conditions, and the piping length calculation error is less than 20% for over 90% working conditions.

Key words: Multi-unit air conditioner, Refrigerant pipeline, Pressure drop, Modeling, Evaluation

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