High-Density Computing: A 240-Processor Beowulf in One Cubic Meter

Michael S. Warren, E. Weigle, Wu-chun Feng
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引用次数: 80

Abstract

We present results from computations on Green Destiny, a 240-processor Beowulf cluster which is contained entirely within a single 19-inch wide 42U rack. The cluster consists of 240 Transmeta TM5600 667-MHz CPUs mounted on RLX Technologies motherboard blades. The blades are mounted side-by-side in an RLX 3U rack-mount chassis, which holds 24 blades. The overall cluster contains 10 chassis and associated Fast and Gigabit Ethernet switches. The system has a footprint of 0.5 meter 2 (6 square feet), a volume of 0.85 meter 3 (30 cubic feet) and a measured power dissipation under load of 5200 watts (including network switches). We have measured the performance of the cluster using a gravitational treecode N-body simulation of galaxy formation using 200 million particles, which sustained an average of 38.9 Gflops on 212 nodes of the system. We also present results from a three-dimensional hydrodynamic simulation of a core-collapse supernova.
高密度计算:一立方米240处理器的贝奥武夫
我们展示了在Green Destiny上的计算结果,这是一个240处理器的Beowulf集群,它完全包含在一个19英寸宽的42U机架中。该集群由240个Transmeta TM5600 667 mhz cpu组成,安装在RLX Technologies主板刀片上。叶片并排安装在RLX 3U机架式机箱中,可容纳24片叶片。整个集群包含10个机箱和关联的快速以太网交换机和千兆以太网交换机。该系统的占地面积为0.5米2(6平方英尺),体积为0.85米3(30立方英尺),负载下的测量功耗为5200瓦(包括网络交换机)。我们使用2亿个粒子的引力树码n体模拟星系形成,测量了星系团的性能,在系统的212个节点上平均维持38.9 Gflops。我们还介绍了一颗核心坍缩超新星的三维流体动力学模拟结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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