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SERVER-RACK AIR FLOW AND HEAT TRANSFER INTERACTIONS IN DATA CENTERS

机译:数据中心的服务器机架空气流量和传热相互作用

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The current study focuses on modeling the server-rack airflow and heat transfer interaction in a data center. In a typical computing facility, the computing requirements are often gradually built-up. For example, in this instance, two servers are placed in a rack designed for a six-server stack. Each server will be separately modeled to the required specifications, and also so that their numbers and placement can be changed. The mass flow rate through the server is determined by examining how pressure profiles develop at the inlet and outlet. This mass flow rate then becomes the input into the rack model. The air inflow temperatures at the front and rear grills were obtained from experiments. The pressure profile into and out of the servers were extracted from the rack model and substituted back into the server model. Iteration continues till an acceptable level of convergence is obtained. To validate the models, experiments were carried out using thermocouples arranged in a 3 × 3 grid on a vertical plane between the exit of the server and the rear cabinet wall of the rack. The results showed that the modeling had captured the essence of the flow and heat transfer interaction. The temperature and pressure profile at the rack inlet and outlet, although in a segmented form, have performed adequately to obtain a good approximation of the flow and temperature distribution within the server/rack. The methodology of passing parameters at the server-rack level using a segmented pressure profile has been established. A similar rack-room level interaction will subsequently be developed. In essence, the methodology is equivalent to replacing the server in the rack and the rack in the room with combined flow network -thermal models. But because of the coupled nature of these two different length scale systems, the models are obtained through an iterative process. The approach enables various combinations of servers and racks to be studied quickly for any undesirable effects of off-design data center operation or layout.
机译:目前的研究侧重于在数据中心中建模服务器机架气流和传热交互。在典型的计算设施中,计算要求通常逐渐地构建。例如,在这种情况下,将两个服务器放在专为六服务器堆栈设计的机架中。每个服务器将单独建模到所需的规格,也可以改变它们的数字和放置。通过检查通过服务器的质量流量通过检查入口和出口时的压力轮廓如何。然后该质量流量变为进入机架模型的输入。从实验中获得前部和后格栅的空气流入温度。从机架模型中提取进出服务器中的压力分布并从后面取代到服务器模型中。迭代继续直到获得可接受的收敛水平。为了验证模型,使用在服务器的出口和机架的后壳壁之间的垂直平面上布置在3×3网格中的热电偶进行实验。结果表明,造型捕获了流动和传热相互作用的本质。齿条入口和出口处的温度和压力分布尽管以分段形式进行充分执行,以获得服务器/机架内的流量和温度分布的良好近似。已经建立了使用分段压力曲线在服务器机架级传递参数的方法。随后将开发类似的机架室级交互。从本质上讲,该方法等同于用组合的流量网络 - 热模型替换机架中的服务器和房间的机架。但由于这两个不同长度尺度系统的耦合性质,通过迭代过程获得模型。该方法能够快速研究服务器和机架的各种组合,以便为非设计数据中心操作或布局的任何不期望的影响。

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