首页> 外文会议>Proceedings of the Fourteenth InterSociety Conference on Thermal and Thermomechanical Phenomena in Electronic Systems >The Plenum concept: Improving scalability, security, and efficiency for data centers
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The Plenum concept: Improving scalability, security, and efficiency for data centers

机译:全体会议的概念:提高数据中心的可伸缩性,安全性和效率

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Data centers are very costly structures, both in terms of capital and operational expenditures. The high innovation rate in the IT business conflicts with the long-term character of data centers. In order to ensure lifetime usability, flexibility is a major concern for any data center design. Recent developments of data center air-cooling, in particular containment solutions for hot/cold air separation, allow rethinking of traditional data center design approaches. In this paper we present the Plenum concept that represents a major overhaul of traditional design principles. Our approach requires the construction of a full additional building story instead of a traditional raised floor. We then position the computer room air-handling (CRAH) units directly below the hot aisle of a block of racks. The down- ward flow direction of hot air makes the strict use of hot/cold air separation mandatory. Our approach minimizes or eliminates support space on the IT floor, moves almost all support structures into the Plenum, and creates very clean interfaces between both spaces. This greatly reduces the need for support personnel on the IT floor. Vice versa, IT personnel does not need to access support spaces, allowing for simplified data center operations. Insight from the planning process of a 5 MW data center currently under construction at TU Dresden shows that the construction of a full building story below the IT floor instead of a traditional raised floor does not necessarily increase the building volume. The simplified access and the separation of IT and support personnel reduces corridor and access spaces. We show that the overall building volume can even be decreased in comparison to classical approaches. Our design easily supports more than 15 kW average heat loads per rack with n+1 CRAH unit redundancy at a highly efficient CRAH operating point and with little scalability limitations regarding computer room size.
机译:数据中心在资本和运营支出方面都是非常昂贵的结构。 IT业务的高创新率与数据中心的长期性相矛盾。为了确保终生可用性,灵活性是任何数据中心设计的主要关注点。数据中心空气冷却的最新发展,尤其是热/冷空气分离的封闭解决方案,使人们可以重新思考传统的数据中心设计方法。在本文中,我们介绍了Plenum概念,该概念代表了对传统设计原则的重大改革。我们的方法要求建造一个完整的附加建筑层,而不是传统的活动地板。然后,我们将计算机机房空气处理(CRAH)单元放置在机架的热通道正下方。热空气的向下流动方向使得必须严格使用热/冷空气分离。我们的方法最大程度地减少或消除了IT层上的支持空间,几乎将所有支持结构移至Plenum,并在两个空间之间创建了非常整洁的界面。这大大减少了对IT部门支持人员的需求。反之亦然,IT人员无需访问支持空间,从而简化了数据中心的操作。德累斯顿工业大学(TU Dresden)当前正在建设的5兆瓦数据中心的规划过程的洞察力表明,在IT层以下而不是传统的活动地板下建造完整的建筑物并不一定会增加建筑物的体积。简化的访问以及IT和支持人员的分离减少了走廊和访问空间。我们证明,与传统方法相比,整体建筑体积甚至可以减少。我们的设计轻松地支持每个机架超过15 kW的平均热负荷,在高效的CRAH工作点具有n + 1个CRAH单元冗余,并且在计算机机房大小方面几乎没有可扩展性限制。

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