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Validation of Computational Fluid Dynamics Based Data Center Cyber-Physical Models.

机译:基于计算流体动力学的数据中心网络物理模型的验证。

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摘要

Energy efficient design and management of data centers has seen considerable interest in the recent years owing to its potential to reduce the overall energy consumption and thereby the costs associated with it. Therefore, it is of utmost importance that new methods for improved physical design of data centers, resource management schemes for efficient workload distribution and sustainable operation for improving the energy efficiency, be developed and tested before implementation on an actual data center. The BlueTool project, provides such a state-of-the-art platform, both software and hardware, to design and analyze energy efficiency of data centers. The software platform, namely GDCSim uses cyber-physical approach to study the physical behavior of the data center in response to the management decisions by taking into account the heat recirculation patterns in the data center room. Such an approach yields best possible energy savings owing to the characterization of cyber-physical interactions and the ability of the resource management to take decisions based on physical behavior of data centers. The GDCSim mainly uses two Computational Fluid Dynamics (CFD) based cyber-physical models namely, Heat Recirculation Matrix (HRM) and Transient Heat Distribution Model (THDM) for thermal predictions based on different management schemes. They are generated using a model generator namely BlueSim. To ensure the accuracy of the thermal predictions using the GDCSim, the models, HRM and THDM and the model generator, BlueSim need to be validated experimentally. For this purpose, the hardware platform of the BlueTool project, namely the BlueCenter, a mini data center, can be used. As a part of this thesis, the HRM and THDM were generated using the BlueSim and experimentally validated using the BlueCenter. An average error of 4.08% was observed for BlueSim, 5.84% for HRM and 4.24% for THDM. Further, a high initial error was observed for transient thermal prediction, which is due to the inability of BlueSim to account for the heat retained by server components.
机译:数据中心的节能设计和管理近年来受到了极大的关注,这是因为它有潜力降低总体能耗,从而降低与之相关的成本。因此,在实际数据中心上实施之前,必须开发和测试用于改进数据中心物理设计的新方法,用于有效分配工作负载的资源管理方案以及用于提高能源效率的可持续运营的新方法。 BlueTool项目提供了这样一个最先进的平台,包括软件和硬件,以设计和分析数据中心的能源效率。该软件平台GDCSim使用网络物理方法来研究数据中心的物理行为,以响应管理决策,同时考虑到数据中心机房中的热循环模式。由于网络与物理交互的特性以及资源管理根据数据中心的物理行为做出决策的能力,因此这种方法可以最大程度地节省能源。 GDCSim主要使用两个基于计算流体动力学(CFD)的网络物理模型,即热循环矩阵(HRM)和瞬态热分布模型(THDM),用于基于不同管理方案的热预测。它们是使用模型生成器(即BlueSim)生成的。为了确保使用GDCSim,模型,HRM和THDM以及模型生成器进行热预测的准确性,需要对BlueSim进行实验验证。为此,可以使用BlueTool项目的硬件平台,即微型数据中心BlueCenter。作为本文的一部分,HRM和THDM是使用BlueSim生成的,并使用BlueCenter进行了实验验证。 BlueSim的平均误差为4.08%,HRM的平均误差为5.84%,THDM的平均误差为4.24%。此外,对于瞬态热预测,观察到很高的初始误差,这是由于BlueSim无法解决服务器组件所保留的热量。

著录项

  • 作者

    Gilbert, Rose Robin.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Engineering Mechanical.
  • 学位 M.S.
  • 年度 2012
  • 页码 77 p.
  • 总页数 77
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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