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Raised Floor Hybrid Cooled Data Center: Effect on Rack Inlet Air Temperatures When In Row Cooling Units are Installed Between the Racks

机译:高架地板混合冷却数据中心:在机架之间安装行内冷却单元时,对机架入口空气温度的影响

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The heat dissipated by high performance IT equipment such as servers and switches in data centers is increasing rapidly, which makes the thermal management even more challenging. IT equipment is typically designed to operate at a rack inlet air temperature ranging between 10 °C and 35 °C. The newest published environmental standards for operating IT equipment proposed by ASHARE specify a long term recommended dry bulb IT air inlet temperature range as 18°C to 27°C. In terms of the short term specification, the largest allowable inlet temperature range to operate at is between 5°C and 45°C. Failure in maintaining these specifications will lead to significantly detrimental impacts to the performance and reliability of these electronic devices. Thus, understanding the cooling system is of paramount importance for the design and operation of data centers. In this paper, a hybrid cooling system is numerically modeled and investigated. The numerical modeling is conducted using a commercial computational fluid dynamics (CFD) code. The hybrid cooling strategy is specified by mounting the in row cooling units between the server racks to assist the raised floor air cooling. The effect of several input variables, including rack heat load and heat density, rack air flow rate, in row cooling unit operating cooling fluid flow rate and temperature, in row coil effectiveness, centralized cooling unit supply air flow rate, non-uniformity in rack heat load, and raised floor height are studied parametrically. Their detailed effects on the rack inlet air temperatures and the in row cooler performance are presented. The modeling results and corresponding analyses are used to develop general installation and operation guidance for the in row cooler strategy of a data center.
机译:高性能IT设备(例如数据中心中的服务器和交换机)散发的热量正在迅速增加,这使热量管理变得更具挑战性。 IT设备通常设计为在机架进气温度为10°C至35°C的范围内运行。 ASHARE提出的最新发布的运行IT设备的环境标准规定了长期推荐的干球IT进气口温度范围为18°C至27°C。就短期规范而言,最大允许入口温度范围为5°C至45°C。未能保持这些规格将对这些电子设备的性能和可靠性造成严重的不利影响。因此,了解冷却系统对于数据中心的设计和运营至关重要。在本文中,对混合冷却系统进行了数值建模和研究。使用商业计算流体动力学(CFD)代码进行数值建模。通过在服务器机架之间安装行内冷却单元来指定混合冷却策略,以辅助高架地板空气冷却。几个输入变量的影响,包括机架热负荷和热密度,机架空气流量,行冷却单元中运行冷却流体的流量和温度,行盘管效率,集中冷却单元供应空气流量,机架中的不均匀性通过参数研究热负荷和升高的地板高度。介绍了它们对机架入口空气温度和行内冷却器性能的详细影响。建模结果和相应的分析用于为数据中心的行内冷却器策略制定通用的安装和操作指南。

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