...
首页> 外文期刊>International journal of electrical power and energy systems >Passive two-phase cooling of air circuit breakers in data center power distribution systems
【24h】

Passive two-phase cooling of air circuit breakers in data center power distribution systems

机译:数据中心配电系统中的空气断路器被动两相冷却

获取原文
获取原文并翻译 | 示例

摘要

This work presents an experimental investigation of a two-phase looped thermosyphon design for cooling Air Circuit Breakers (ACBs) in switchgear used in data center power distribution systems. The FC72 charged thermosyphon is comprised of a bespoke evaporator that is fixed tightly to the copper adaptor of the ACB. Dielectric tubing connects the evaporator to a remote naturally aspirated and thin form factor condenser. Since both the working fluid and the connection tubing are dielectric, the thermosyphon provides electrical isolation between the ACB and the remote heat sink. The condenser is a thin serpentine channel with surface extensions and is cooled by natural convection and radiation to the ambient environment. Benchtop thermal performance tests were performed for increasing load power for two scenarios: for the stand-alone looped thermosyphon and for the case where copper bus bars are also fixed to the ACB adapter. For 60 W thermal power dissipation, a nominal operational condition, the thermal resistance of the looped thermosyphon system was determined to be 0.55 K/W without bus bars attached. With bus bars attached, this decreases to 0.42 K/W which results in a breaker to ambient temperature rise of about 25 K, which is significantly lower than operational limits of 85 K temperature rise. In-situ tests were then performed on a live ACB system carrying a 2000 A load and showed that the looped thermosyphon system was capable of decreasing the ambient temperature rise by 26 K, which is significant. The low thermal resistance of this passive cooling technology opens the opportunity for increased electrical service per breaker and/or a significant reduction in the volume of copper bus bars used with associated cost reduction of ACB technologies.
机译:该工作介绍了在数据中心配电系统中用于冷却空气断路器(ACBS)的两相环路热烃设计的实验研究。 FC72带电的热旋流器由定制蒸发器组成,该蒸发器紧紧地固定到ACB的铜适配器。介电管连接蒸发器到远程自然吸气和薄的外形冷凝器。由于工作流体和连接管都是电介质,因此热循环提供ACB和远程散热器之间的电隔离。冷凝器是具有表面延伸的薄蛇形通道,并通过自然对流和辐射冷却到环境环境。为了增加两个场景的负载功率,执行台式热性能测试:对于独立的环状的热旋流器和铜母线也固定到ACB适配器的情况。对于60W热功耗,标称操作条件,环状的热烃系统的热阻确定为0.55 k / W,无需汇流条。随着汇流条附接,这减少到0.42 k / w,导致暴干器到环境温度上升约25 k,这显着低于85k温度升高的操作限制。然后在携带2000载荷的活acB系统上进行原位测试,并显示环状的热循环系能力将环境温度升高26 k,这是显着的。这种被动冷却技术的低热电阻为每个断路器增加了电气服务的机会和/或与ACB技术的相关成本降低使用的铜母线的体积显着降低。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号