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From chip to cooling tower data center modeling: Part Influence of chip temperature control philosophy

机译:从芯片到冷却塔数据中心建模:芯片温控哲学的部分影响

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The chiller cooled data center environment consists of many interlinked elements that are usually treated as individual components. This chain of components and their influences on each other must be considered in determining the benefits of any data center design and operational strategies seeking to improve efficiency, such as temperature control fan algorithms. Using the models developed in part I of this work, this paper extends the analysis to include the electronics within the rack through considering the processor heat sink temperature. This has allowed determination of the influence of various cooling strategies on the data center coefficient of performance. The strategy of increasing inlet aisle temperature Is examined in some detail and found not to be a robust methodology for improving the overall energy performance of the data center, while tight temperature controls at the chip level consistently provides better performance, yielding more computing per watt of cooling power. These findings are of strong practical relevance for the design of fan control algorithms at the rack level and general operational strategies in data centers. Finally, the impact of heat sink thermal resistance is considered and the potential data center efficiency gains from improved heat sink designs are discussed.
机译:冷却器冷却数据中心环境包括许多互连元素,通常被视为单独的组件。在确定任何数据中心设计和操作策略的益处时,必须考虑这种组件链及其对彼此的影响,寻求提高效率,例如温度控制风扇算法。使用本作工作部分开发的模型,通过考虑处理器散热温度,将分析扩展到包括机架内的电子产品。这允许确定各种冷却策略对数据中心性能系数的影响。在一些细节中检查了增加了入口过道温度的策略,发现不作为提高数据中心的整体能量性能的鲁棒方法,而芯片水平的紧度温度控制始终如一的性能,产生每个瓦特的更多计算冷却功率。这些发现对于在机架级别和数据中心的一般运营策略中的风扇控制算法设计具有强大的实际相关性。最后,考虑了散热器热阻的影响,并讨论了改进的散热器设计的潜在数据中心效率。

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