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Strategies for effective use of exergy-based modeling of data center thermal management systems

机译:有效使用基于火用的数据中心热管理系统建模的策略

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As power densities in data centers quickly increase, the inefficiencies of yesterday are becoming costly data center thermal management problems today. One proposed method to address the inefficiencies of state-of-the-art data centers is to use the concept of exergy. To this end, earlier investigations have used a finite-volume, uniform-flow computer model to analyze exergy destruction as a means of identifying inefficiencies. For this type of exergy-based program to be a useful engineering tool, it should; (i) be easy to set up, viz. establish grid size and impose system parameters; (ii) have a formulation that is solvable and numerically stable; (iii) be executable in reasonable time on a workstation machine with typical processor speed and memory; and (iv) model the physics with acceptable accuracy. This investigation explored specific strategies for achieving these features. This work demonstrates that optimally chosen computational strategies do enhance the usefulness of an exergy-based analysis program as an engineering tool for evaluating the thermal performance of a data center.
机译:随着数据中心功率密度的快速增长,今天的低效率正在成为当今代价高昂的数据中心热管理问题。解决现有数据中心效率低下的一种建议方法是使用“火用”概念。为此,较早的研究使用了有限体积的均匀流计算机模型来分析火用破坏,以此作为识别低效率的手段。为了使这种基于火用的程序成为有用的工程工具,应该; (i)易于设置,即。确定网格大小并施加系统参数; (ii)具有可解决且数值稳定的配方; (iii)在合理的时间内可在具有典型处理器速度和内存的工作站计算机上执行; (iv)以可接受的精度对物理模型进行建模。这项调查探索了实现这些功能的特定策略。这项工作表明,最佳选择的计算策略确实可以增强基于火用的分析程序作为评估数据中心热性能的工程工具的实用性。

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