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Challenges of data center thermal management

机译:数据中心热管理的挑战

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The need for more performance from computer equipment in data centers has driven the power consumed to levels that are straining thermal management in the centers. When the computer industry switched from bipolar to CMOS transistors in the early 1990s, low-power CMOS technology was expected to resolve all problems associated with power and heat. However, equipment power consumption with CMOS has been rising at a rapid rate during the past 10 years and has surpassed power consumption from equipment installed with the bipolar technologies 10 to 15 years ago. Data centers are being designed with 15—20-year life spans, and customers must know how to plan for the power and cooling within these data centers. This paper provides an overview of some of the ongoing work to operate within the thermal environment of a data center. Some of the factors that affect the environmental conditions of data-communication (datacom) equipment within a data center are described. Since high-density racks clustered within a data center are of most concern, measurements are presented along with the conditions necessary to meet the datacom equipment environmental requirements. A number of numerical modeling experiments have been performed in order to describe the governing thermo-fluid mechanisms, and an attempt is made to quantify these processes through performance metrics.
机译:数据中心对计算机设备的更高性能的需求已将功耗降至一定水平,这使中心的热管理压力很大。 1990年代初期,当计算机行业从双极型晶体管转变为CMOS晶体管时,人们期望使用低功率CMOS技术来解决与功率和热量有关的所有问题。但是,在过去的10年中,使用CMOS的设备功耗一直在快速增长,并已超过10到15年前使用双极技术安装的设备的功耗。数据中心的设计使用寿命为15至20年,客户必须知道如何规划这些数据中心内的电源和散热。本文概述了在数据中心的热环境下运行的一些正在进行的工作。描述了影响数据中心内数据通信(datacom)设备环境条件的一些因素。由于群集在数据中心内的高密度机架是最受关注的问题,因此提出了测量结果以及满足数据通信设备环境要求的必要条件。为了描述控制热流体的机理,已经进行了许多数值模拟实验,并试图通过性能指标来量化这些过程。

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