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EXERGY-BASED OPTIMIZATION STRATEGIES FOR MULTI-COMPONENT DATA CENTER THERMAL MANAGEMENT: PART II - APPLICATION AND VALIDATION

机译:基于漏极的多分量数据中心热管理优化策略:第II部分 - 应用和验证

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Recent work has proposed an exergy-based strategy to achieve optimal system-wide performance via localized control of individual data center thermal management components. This paper presents the results of a case study where the proposed approach is applied to a data center with two rows of computing racks and two Computer Room Air-Conditioning (CRAC) units. The formulated model is used to predict the optimal data center configuration in terms of supply temperatures, flowrates, and rack heat load configurations. Two extreme cases are chosen: one with the maximum experimental heat load in the data center, and one with a minimal experimental heat load. For each case, the optimal settings for each CRAC unit were predicted using the model and using temperature + flow measurements in the data center. The setpoints predicted by the model for optimal CRAC flow and supply temperature were within 25% of the experimentally determined optima.
机译:最近的工作提出了基于漏洞的战略,通过各个数据中心热管理组件的本地化控制实现了最佳的系统范围性能。本文介绍了案例研究的结果,其中所提出的方法应用于具有两排计算架的数据中心和两个计算机空调(CRAC)单元。配方模型用于预测供应温度,流量和机架热负荷配置的最佳数据中心配置。选择两个极端情况:数据中心中最大实验热负荷的一个极端情况,还有一个具有最小实验热负荷。对于每种情况,使用模型和使用数据中心中的温度+流量测量来预测每个CRAC单元的最佳设置。最佳CRAC流量和供应温度的模型预测的设定值在实验确定的最佳最佳的25%以内。

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