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Thermal Time Shifting: Decreasing Data Center Cooling Costs with Phase-Change Materials

机译:热时移:使用相变材料降低数据中心的冷却成本

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As data centers increase in size and computational capacity, their growth comes at a cost: an increasing thermal load that must be removed to prevent overheating. Here, the authors propose using phase-change materials (PCMs) to shape a data center's thermal load, absorbing and releasing heat when it's advantageous. They evaluate three important opportunities for cost savings. They find that in a data center, PCM can reduce the necessary cooling system size by up to 12 percent without impacting peak throughput, or increase the number of servers by up to 14.6 percent without increasing the cooling load. In a thermally constrained setting, PCM can increase peak throughput up to 69 percent while delaying the onset of thermal limits by over 3 hours, and a wax-aware scheduler enables up to a 11 percent reduction in peak cooling load when batch jobs are added, increasing average daily throughput by 36-52 percent.
机译:随着数据中心规模的增大和计算能力的提高,它们的增长付出了一定的代价:不断增加的热负荷必须消除,以防止过热。在这里,作者建议使用相变材料(PCM)来塑造数据中心的热负荷,并在有利时吸收和释放热量。他们评估了三个重要的节省成本的机会。他们发现,在数据中心中,PCM可以将所需的冷却系统尺寸减少多达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,将服务器数量增加多达14.6%。在受热限制的情况下,PCM可以将峰值吞吐量提高到69%,同时将热限制的生效时间延迟了3个小时以上;当添加批处理作业时,支持蜡的调度程序可以将峰值冷却负荷降低多达11%,将平均每日吞吐量提高了36-52%。

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