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IMPACT OF INTERNAL DESIGN ON THE EFFICIENCY OF IT EQUIPMENT IN A HOT AISLE CONTAINMENT SYSTEM - AN EXPERIMENTAL STUDY

机译:内部设计对热通道控制系统中IT设备效率的影响-实验研究

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There are various designs for segregating hot and cold air in data centers such as cold aisle containment (CAC), hot aisle containment (HAC), and chimney exhaust rack. These containment systems have different characteristics and impose various conditions on the information technology equipment (ITE). One common issue in HAC systems is the pressure buildup inside the HAC (known as backpressure). Backpressure also can be present in CAC systems in case of airflow imbalances. Hot air recirculation, limited cooling airflow rate in servers, and reversed flow through ITE with weaker fan systems (e.g. network switches) are some known consequences of backpressure. Currently there is a lack of experimental data on the interdependency between overall performance of ITE and its internal design when a backpressure is imposed on ITE. In this paper, three commercial 2-rack unit (RU) servers with different internal designs from various generations and performance levels are tested and analyzed under various environmental conditions. Smoke tests and thermal imaging are implemented to study the airflow patterns inside the tested equipment. In addition, the impact leak of hot air into ITE on the fan speed and the power consumption of ITE is studied. Furthermore, the cause of the discrepancy between measured inlet temperatures by internal intelligent platform management interface (IPMI) and external sensors is investigated. It is found that arrangement of fans, segregation of space upstream and downstream of fans, leakage paths, location of sensors of baseboard management controller (BMC) and presence of backpressure can have a significant impact on ITE power and cooling efficiency.
机译:在数据中心中,有多种设计用于隔离热空气和冷空气,例如冷通道气流遏制(CAC),热通道气流遏制(HAC)和烟囱排气架。这些遏制系统具有不同的特性,并在信息技术设备(ITE)上施加了各种条件。 HAC系统中的一个常见问题是HAC内部的压力累积(称为背压)。在气流不平衡的情况下,CAC系统中也可能存在背压。热空气再循环,服务器中有限的冷却气流速率以及使用较弱的风扇系统(例如网络交换机)通过ITE反向流动是背压的一些已知结果。当前,当对ITE施加背压时,缺乏关于ITE整体性能与其内部设计之间的相互依赖性的实验数据。在本文中,对在不同环境条件下测试和分析了三台具有不同内部设计,各代产品和不同性能水平的商用2机架单元(RU)服务器。进行了烟雾测试和热成像来研究被测设备内部的气流模式。此外,还研究了热空气泄漏到ITE上对风扇速度和ITE功耗的影响。此外,研究了通过内部智能平台管理界面(IPMI)与外部传感器测得的入口温度之间存在差异的原因。发现风扇的布置,风扇上游和下游空间的分隔,泄漏路径,基板管理控制器(BMC)传感器的位置以及背压的存在会对ITE功率和冷却​​效率产生重大影响。

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