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Data Center Energy and Cost Saving Evaluation

机译:数据中心能量和成本节约评估

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In data centers, about 40% of the total energy is consumed for cooling the IT equipment. Cooling costs are thus one of the major contributors to the total electricity bill of large data centers. This paper studies two factors affecting data center cooling energy consumption, namely air flow management and data center location selection. A unique rack layout with a vertically cooling air flow is proposed. Two cooling systems, computer room air conditioning (CRAC) cooling system and airside economizer (ASE), have been studied. Based on these two cooling systems, four cities have been selected from the worldwide data center locations. A number of energy efficiency metrics are explored for data center cooling, such as power usage effectiveness (PUE), coefficient of performance (COP) and chiller hours. By analyzing the effects of chiller hours and economizer hours, comparative economic results of cooling power consumption are provided in both systems. The results show that the cooling efficiency and operating costs vary significantly with different climate conditions, energy prices and cooling technologies. As climate condition is the major factor which affects the airside economizer, employing the airside economizer in the cold climate yields much lower energy consumption and operation costs.
机译:在数据中心,消耗约40%的总能量用于冷却IT设备。因此,冷却成本是大型数据中心总电费的主要贡献者之一。本文研究了影响数据中心冷却能耗的两个因素,即空气流管理和数据中心位置选择。提出了一种具有垂直冷却空气流量的独特齿条布局。已经研究了两个冷却系统,电脑室空调(CRAC)冷却系统和空气侧储存器(ASE)。基于这两个冷却系统,从全球数据中心位置选择了四个城市。探索了许多能效度量,用于数据中心冷却,如电力使用效率(PUE),性能系数(COP)和冷却时间。通过分析冷却时间和节能时间的影响,两个系统都提供了冷却功耗的比较经济结果。结果表明,冷却效率和运营成本随着不同的气候条件,能源价格和冷却技术而显着变化。随着气候条件是影响空气侧恢复器的主要因素,在寒冷的气候中采用空中助长器产生的能耗和运营成本要降低。

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