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DIRECT WASTE HEAT UTILIZATION FROM LIQUID-COOLED SUPERCOMPUTERS

机译:液态冷却超级计算机直接利用废热

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Chip microscale liquid-cooling reduces conductive and convective resistance thereby improving the efficiency of datacenters by allowing coolant temperatures above the free cooling limit in all climates. This eliminates the need for chillers and allows the thermal energy to be re-used in cold climates. Replacing the combustion processes for secondary users with recycled heat from the datacenter effectively eliminates carbon dioxide emission during the winter season and reduces operating cost throughout the year. The energy balance of emission-reduced datacenters is compared with a classical air cooled datacenter, a datacenter with free cooling in a cold climate zone, and a datacenter with chiller-mediated energy re-use. Hot water cooled datacenters reduce the effective energy cost by almost a factor of two compared to a current datacenter and reduce the carbon footprint by an even larger factor. Our energy re-use concept has been demonstrated in terms of cost and energy savings in a 60°C liquid cooled supercomputer. Additional alternative energy re-use schemes in hot climates for desalination and adsorption cooling allow close to full use of datacenter heat in all climates and all seasons. Output temperatures for these applications compared to space heating need to be 10-20°C higher which becomes possible through hotspot adapted cooling that eliminates mixing of fluids with different temperatures. In addition, interlayer cooled chip stacks allow double sided hotspot optimized cooling even closer to the heat source with low flow rates and low pumping power. This improves the large efficiency gain that becomes possible through 3D chip stacking.
机译:芯片微观液体冷却可降低导电和对流性,从而通过允许在所有气候中的自由冷却极限上方允许冷却剂温度来提高数据中心的效率。这消除了对冷却器的需求,并允许在寒冷气候中重新使用热能。取代来自数据中心的再循环热量的二次用户的燃烧过程有效地消除了冬季的二氧化碳排放,并降低了全年的运营成本。将排放减少的数据中心的能量平衡与经典的空气冷却的数据中心进行比较,该数据中心具有冷气候区的可自由冷却的数据环,以及具有冷却器介导的能量再使用的数据环。与当前的数据中心相比,热水冷却数据中心将有效的能量降低了几乎两个倍数,并通过甚至更大的因素降低了碳足迹。我们的能源重复使用概念已经在60°C液体冷却超级计算机上的成本和节能方面进行了说明。用于脱水和吸附冷却的热气候中的其他替代能源重复使用方案可以在所有气候和所有季节充分利用数据中心热量。与空间加热相比,这些应用的输出温度需要高出10-20°C,通过热点调整冷却,可以消除具有不同温度的流体的混合。此外,中间层冷却芯片堆叠允许双面热点优化冷却甚至更接近热源,流量低,泵浦功率低。这提高了通过3D芯片堆叠成为可能的大效率增益。

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