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Thermal time shifting: Leveraging phase change materials to reduce cooling costs in warehouse-scale computers

机译:热时间转移:利用相变材料,以降低仓库级计算机中的冷却成本

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Datacenters, or warehouse scale computers, are rapidly increasing in size and power consumption. However, this growth comes at the cost of an increasing thermal load that must be removed to prevent overheating and server failure. In this paper, we propose to use phase changing materials (PCM) to shape the thermal load of a datacenter, absorbing and releasing heat when it is advantageous to do so. We present and validate a methodology to study the impact of PCM on a datacenter, and evaluate two important opportunities for cost savings. We find that in a datacenter with full cooling system subscription, PCM can reduce the necessary cooling system size by up to 12% without impacting peak throughput, or increase the number of servers by up to 14.6% without increasing the cooling load. In a thermally constrained setting, PCM can increase peak throughput up to 69% while delaying the onset of thermal limits by over 3 hours.
机译:数据中心或仓库秤计算机的尺寸和功耗迅速增加。然而,这种增长以越来越多的热负荷的成本为止,以防止过热和服务器故障。在本文中,我们建议使用相变材料(PCM)来塑造数据中心的热负荷,当有利的情况下,吸收和释放热量。我们展示并验证了一种方法来研究PCM对数据中心的影响,并评估成本节约的两个重要机会。我们发现,在具有完整冷却系统订阅的数据中心,PCM可以将必要的冷却系统大小降低到12%,而不会影响峰值吞吐量,或者在不增加冷却负荷的情况下将服务器数量增加到14.6%。在热约束的环境中,PCM可以将高达69%的峰值产量提高,同时延迟3小时内的热限制的开始。

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