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COMPUTATIONAL STUDY OF AIR COOLED DATA CENTERS ASSISTED WITH LOCALLY DISTRIBUTED WATER TO AIR HEAT EXCHANGERS

机译:局部分布水辅助空气换热器的空气冷却数据中心的计算研究

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The heat dissipated by data center equipment continues to increase due to the growing server power year by year. Thermal management continually becomes a challenging problem both from the standpoint of maintaining the equipment within a proper and reliable operation environment, as well as from a total energy cost perspective. With the total heat load increasing, as well as local high density heat fluxes, more cooling air flow rates may be needed by the racks which cannot be sufficiently provided by CRAC units. This may occur during peak periods of operation and may also occur in isolated aisles in the data center. Under such circumstances, just changing the air flow rates to specific aisles may cause unanticipated hot air recirculation into cold aisles which may happen during the transients that arise as the load and air flow rates are changing; henceforth, it may even occur in steady state. This could reduce the reliability of the data center equipment. A hybrid cooling strategy, which uses water to air heat exchangers located at the rear of specific racks to assist the air cooling, can be very effective in solving this problem by removing heat from the rack before it is exhausted into the room. This study describes the impact of this heat exchanger strategy on the thermal management of a data center. In this analytical study, the heat removal percentage and working efficiency of the heat exchanger are presented under different water flowrates and water inlet temperatures. Different case studies are conducted, showing that this method can significantly assist the data center air cooling under scenarios such as, power increases or CRAC unit failure. Detailed function of the heat exchanger on impacting the rack inlet temperatures are also discussed in this paper.
机译:由于年复所有的服务器电力增长,数据中心设备的热量持续增加。从在适当可靠的操作环境中维护设备的观点以及总能量成本的角度来看,热管理都是一个挑战性问题。随着总热负荷的增加,以及局部高密度热通量,齿条可能需要更多的冷却空气流速,其不能通过CRAC单元充分提供。这可能发生在峰值期间,并且还可以在数据中心的隔离过通道中发生。在这种情况下,刚改变到特定的过道的空气流速可能导致意想不到的热空气再循环到冷通道中,这可能发生在由于负载和空气流速变化而产生的瞬变期间;从此,它甚至可能发生在稳定状态。这可以降低数据中心设备的可靠性。一种混合冷却策略,它使用水与位于特定架子的后部的空气热交换器,以帮助空气冷却,这在通过从机架中排出到房间之前从机架中除去热量来解决这个问题非常有效。本研究描述了这种热交换器策略对数据中心的热管理的影响。在该分析研究中,热交换器的散热百分比和工作效率在不同的水流量和进水温下呈现。进行了不同的案例研究,表明该方法可以在诸如功率增加或CRAC单元故障的情况下显着帮助数据中心空气冷却。本文还讨论了换热器对撞击机架温度的详细功能。

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