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Data Center housing the World's 3rd Fastest Supercomputer - Above Floor Thermal Measurements Compared to CFD Analysis -

机译:数据中心住房全球第3最快的超级计算机 - 与CFD分析相比,地板热测量 -

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With the ever increasing heat dissipated by IT equipment housed in data centers it is becoming more important to project the changes that can occur in the data center as the newer higher powered hardware is installed. The computational fluid dynamics(CFD) software that is available has improved over the years and some CFD software specific to data center thermal analysis has been developed. This has improved the timeliness of providing some quick analysis of the effects of new hardware into the data center. But it is critically important that this software provide a good report to the user of the effects of adding this new hardware. And it is the purpose of this paper to examine a large cluster installation and compare the CFD analysis with environmental measurements obtained from the same site. This paper shows measurements and CFD analysis of high powered racks as high as 27 kW clustered such that heat fluxes in some regions of the data center exceeded 700 Watts/ft~2 (7535 W/m~2). This paper describes the thermal profile of a high performance computing cluster located in an IBM data center and a comparison of that cluster modeled with CFD software. The high performance Advanced Simulation and Computing(ASC) cluster, developed and manufactured by IBM, is code named ASC Purple. It is the World's 3rd fastest supercomputer[1], operating at a peak performance of 77.8 TFlop/s. ASC Purple, which employs IBM pSeries p575, Model 9118, contains more than 12,000 processors, 50 terabytes of memory, and 2 petabytes of globally accessible disk space. The cluster was first tested in the IBM development lab in Poughkeepsie, NY and then shipped to Lawrence Livermore National Labs in Livermore, California where it was installed to support our national security mission. Detailed measurements were taken in both data centers of electronic equipment power usage, perforated floor tile airflow, cable cutout airflow, computer room air conditioning (CRAC) airflow, and electronic equipment inlet air temperatures and were report in Schmidt[2], but only the IBM Poughkeepsie results will be reported here along with a comparison to CFD modeling results. In some areas of the Poughkeepsie data center there were regions that did exceed the equipment inlet air temperature specifications by a significant amount. These areas will be highlighted and reasons given on why these areas failed to meet the criteria. The modeling results by region showed trends that compared somewhat favorably but some rack thermal profiles deviated quite significantly from measurements.
机译:与IT消耗的不断增加热量安置在数据中心设备正变得越来越重要,以项目为安装了新的更高功率的硬件可能发生在数据中心的变化。计算流体动力学(CFD)软件,可多年来一直提高,一些CFD软件专门针对数据中心热分析已经研制成功。这提高提供新硬件的影响,一些快速分析到数据中心的及时性。但是,这种软件提供的添加这一新的硬件的影响用户一个很好的报告,这是非常重要的。而正是本文的目的是检验一个大型集群的安装和比较来自同一个站点获得环境测量的CFD分析。本文示出了测量和CFD大功率机架高达27千瓦的分析聚集,使得在数据中心的某些区域的热通量超过700瓦/英尺〜2(7535瓦/米〜2)。本文描述位于一个IBM的数据中心以及与群集CFD软件建模的比较的高性能计算集群的热分布。高性能的高级仿真和计算(ASC)集群,开发和制造的IBM,是一个名为ASC紫码。它是世界第三最快的超级计算机[1],在77.8 TFLOP的峰值性能运行/秒。 ASC紫色,其采用IBM的pSeries P575,型号9118,包含超过12000个处理器,存储器50兆兆字节,以及2个PB的全球可访问的磁盘空间。集群首次在纽约Poughkeepsie的IBM开发实验室测试,然后运到它被安装在支持我们的国家安全的使命在加利福尼亚州利弗莫尔劳伦斯·利弗莫尔国家实验室。详述测量是在电子设备的功率使用的两个数据中心,穿孔铺地砖气流,缆线切口气流,计算机室空调(CRAC)的气流,和电子设备的入口空气的温度和分别为报告在施密特[2],但只有IBM Poughkeepsie的结果将在这里与比较CFD模拟结果一起进行报告。在波基普西数据中心的部分地区有迹象表明没有一个显著量超过设备进风温度规格的区域。这些区域将被高亮显示,并给出理由为什么这些领域没能达到标准。按地区模拟结果显示趋势相比有所毫不逊色,但一些机架在测量相当显著偏离隔热型材。

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