家电科技 ›› 2023, Vol. 0 ›› Issue (6): 58-63.doi: 10.19784/j.cnki.issn1672-0172.2023.06.009

• 论文 • 上一篇    下一篇

辐射冷却末端实际空间制冷特性及影响因素研究

贾潇雅1, 汪亮兵1, 汪超1,2, 王志坤3, 杨双3, 蔡宁3, 李欣1,3   

  1. 1.中国家用电器研究院 北京 100037;
    2.北京航空航天大学航空科学与工程学院 北京 100083;
    3.中家院(北京)检测认证有限公司 北京 100176
  • 出版日期:2023-12-01 发布日期:2024-04-17
  • 作者简介:贾潇雅,博士学位。研究方向:制冷系统节能技术研究,光储直柔技术研究。E-mail:jiaxy@cheari.com。
  • 基金资助:
    国家重点研发计划项目“建筑直流机电设备工程应用与检测评价”(2022YFC3802505)

Research on the actual space cooling capacity and influencing factors of radiant cooling terminal

JIA Xiaoya1, WANG Liangbing1, WANG Chao1,2, WANG Zhikun3, YANG Shuang3, CAI Ning3, LI Xin1,3   

  1. 1. China Household Electrical Appliances Research Institute Beijing 100037;
    2. School of Aeronautical Science and Engineering, Beijing University of Aeronautics and Astronautics Beijing 100083;
    3. CHEARI (Beijing) Certification & Testing Co., Ltd. Beijing 100176
  • Online:2023-12-01 Published:2024-04-17

摘要: 为了研究冷却流体参数对于辐射冷却末端实际制冷性能的影响规律,搭建了小室模拟实际房间,采用了房间热平衡的实验测试方式来精准计量辐射冷却末端的实际制冷能力,研究分析了流量、进水温度、铺设方式等因素对于辐射板实际空间制冷能力的影响。实验结果表明,通过增大进水流量和降低进水温度(不低于露点温度)的方式均可提高单位面积辐射冷却末端的实际空间制冷能力。在0.5 m3/h流量工况下,随着进水温度从18.42℃降低至14.53℃,单位面积辐射板的实际空间制冷能力从41.48 W/m2增大至95.19 W/m2。仅顶板铺设辐射板是提高单位面积辐射板制冷能力的最佳铺设方式,相对于顶板+底板双壁面铺设辐射板而言,仅顶板铺设辐射板时的单位面积辐射板实际空间制冷量可提高18.6%~46.67%。

关键词: 辐射冷却末端, 制冷能力, 热平衡法, 流量

Abstract: In order to study the influence of cooling fluid parameters on the actual cooling capacity of the radiant cooling terminals, a small room was builded to simulate the actual room, the experimental test of the room heat balance was used to accurately measure the actual cooling capacity of the radiant cooling terminals the room, the influence of flow rate, the inlet water temperature, the way of laying on the actual space cooling capacity was analyzed. The experimental results show that the actual space cooling capacity per unit area of radiant cooling end can be increased both by increasing the inlet water flow rate and by decreasing the inlet water temperature (not lower than the dew point temperature). Under the condition of 0.5 m3/h flow rate, as the inlet water temperature is reduced from 18.42℃ to 14.53℃, the actual space cooling capacity per unit area of radiant plate is increased from 41.48 W/m2 to 95.19 W/m2. Only the top plate laying radiation plate is the best laying way to improve the cooling capacity per unit area of radiation plate, compared with the top plate and bottom plate double wall laying radiation plate, only the top plate laying radiation plate when the actual space cooling capacity per unit area of radiation plate can be increased by 18.6%~46.67%.

Key words: Radiant cooling terminal, Cooling capacity, Thermal equilibrium method, Flow rate

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