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Impact of aisle containment on energy performance of a data center when using an integrated water-side economizer

机译:使用集成水侧节能器时,过道控制对数据中心能源性能的影响

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摘要

The main purpose of this study is to analyze the impact of cold aisle containment on the thermal management performance of a data center, as well as on the amount of energy consumed for cooling. The thermal management performance of the aisle containment architecture, which has been widely employed throughout the data center industry, is demonstrated by experiment. A computational fluid dynamics (CFD) modeling strategy is used for the containment air leakage prediction validated by experiments. The thermal management performance of an uncontained and contained aisles are compared through CFD simulation. In addition, since the containment's energy performance is maximized when an economizer is incorporated, a model-based simulation of the annual cooling energy consumption of a modular data center with an integrated water-side economizer is conducted. The simulation results show that the thermal management performance is excellent in both architectures with an appropriate cooling system control, but the energy savings are much greater with the contained architecture. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项研究的主要目的是分析冷通道气流遏制对数据中心的热管理性能以及冷却所消耗的能源量的影响。通过实验证明了在整个数据中心行业中广泛采用的过道封闭结构的热管理性能。计算流体动力学(CFD)建模策略用于通过实验验证的安全壳漏气预测。通过CFD仿真比较了一个无人通道和封闭通道的热管理性能。此外,由于在安装省煤器时,安全壳的能源性能得到了最大化,因此进行了基于模型的模拟,该模型对带有集成水侧省煤器的模块化数据中心的年冷却能耗进行了模拟。仿真结果表明,在两种体系结构中采用适当的冷却系统控制,其热管理性能均十分出色,但采用所包含的体系结构,则可节省更多的能源。 (C)2015 Elsevier Ltd.保留所有权利。

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