电器与能效管理技术 ›› 2026, Vol. 0 ›› Issue (1): 71-75.doi: 10.16628/j.cnki.2095-8188.2026.01.010

• 仿真技术 • 上一篇    下一篇

数据中心环境温度提高至32 ℃对存量交流列头柜小型断路器可靠性的影响分析

杨锐, 李小峰, 陈嘉俊, 徐南钧   

  1. 杭州中恒电气股份有限公司, 浙江 杭州 310053
  • 收稿日期:2025-10-30 出版日期:2026-01-30 发布日期:2026-02-10
  • 作者简介:杨锐(1990—),男,主要从事数据中心交直流电源系统及供配电设备的开发工作。|李小峰(1990—),男,主要从事数据中心交直流电源系统及供配电设备结构技术开发工作。|陈嘉俊(1990—),男,主要从事数据中心交直流电源系统及供配电设备结构技术开发工作。

Analysis on the Impact of Increasing Data Center Ambient Temperature to 32 ℃ on the Reliability of Miniature Circuit Breakers in Existing AC Header Cabinets

YANG Rui, LI Xiaofeng, CHEN Jiajun, XU Nanjun   

  1. Hangzhou Zhongheng Electric Co.,Ltd., Hangzhou 310053, China
  • Received:2025-10-30 Online:2026-01-30 Published:2026-02-10

摘要:

为解决数据中心制冷能耗高、能源使用效率(PUE)难优化的痛点,以存量数据中心交流列头柜为研究对象,聚焦环境温度提高至32 ℃对列头柜馈线小型断路器动作可靠性的影响,探讨提高环境温度来优化能源使用效率(PUE)的可行性。选取市场占比高的ABB S200系列小型断路器,先通过公式计算列头柜的电流需求,再利用Ansys软件建立列头柜热模型,仿真32 ℃环境温度下柜内温度分布,得出馈线小型断路器安装位置温度为40~45 ℃;随后结合GB/T 10963.1—2020《电气附件 家用及类似场所用过电流保护断路器 第 1 部分:用于交流的断路器》及产品样本,理论分析了馈线小型断路器误动作的可能性;最后通过5组45只小型断路器分别在40 ℃、45 ℃环境温度和0.85In、1.05In负载条件下的试验验证,证明了数据中心环境温度提高至32 ℃不会导致列头柜馈线小型断路器误动作,不影响供电可靠性。

关键词: 数据中心, 交流列头柜, 环境温度, 可靠性

Abstract:

To solve the problems of high cooling energy consumption and difficulty in Power Usage Effectiveness (PUE) optimization in data centers,AC header cabinets in existing data centers are taken as the research subject.The impact of increasing ambient temperature to 32 ℃ on the operational reliability of miniature circuit breakers (MCBs) in the feeder branches of header cabinets is focused on,and the feasibility of reducing PUE by raising temperature is explored.ABB S200 series MCBs with a high market share are selected.Firstly,the rated current requirements of the AC header cabinets are calculated through formulas.Then,a thermal model of the header cabinet is established using Ansys software,and the internal temperature under 32 ℃ ambient temperature is simulated.The results show that the temperature at the installation position of the feeder MCBs is 40~45 ℃.Subsequently,combined with GB/T 10963.1—2020 Electrical accessoriesCircuit breakers for overcurrent protection for household and similar installationsPart 1: Circuit-breakers for a.c. operation and product specifications,the possibility of misoperation of the feeder MCBs is analyzed theoretically.Finally,experimental verification is performed on 45 MCBs (divided into 5 groups) under the conditions of 40 ℃/45 ℃ ambient temperatures and 0.85In/1.05In loads.The results show that increasing the ambient temperature of the data center to 32 ℃ does not cause misoperation of the MCBs in the feeder branches of the header cabinet,nor does it affect the power supply reliability.

Key words: data center, AC header cabinet, ambient temperature, reliability

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