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Data center efficiency with higher ambient temperatures and optimized cooling control

机译:数据中心效率较高,环境温度较高,优化冷却控制

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Advances in server technology have resulted in the cost of acquiring server equipment trending down, while economies of scale in data centers have significantly reduced the cost of labor. This leaves the cost of the energy as the next target for optimization. Energy costs are driven by operating the IT equipment, the switchgear that provides uninterrupted power to the equipment, and in cooling the IT equipment. In a typical datacenter, almost 40% of the total power consumption is spent on cooling. In addition, cooling effectiveness is a first order factor in determining the lifespan of the data center. One of the emerging trends in the industry is to move datacenter operations to higher ambient temperatures with some Operators wanting to set supply air temperatures as high as 40°C while improving cooling system efficiency. This study will show that with optimized cooling control one could reduce the total cost of ownership at the datacenter level by optimizing the datacenter cooling budget while ensuring no performance loss at increased ambient temperature conditions. This paper describes a platform-assisted thermal management approach that uses new sensors providing server airflow and server outlet temperature to improve control of the data centers cooling solution. This data is also used as input to a computational fluid dynamics (CFD) model for accurate predictive analysis and optimization of future change scenarios, thus increasing the data center efficiency and reducing power consumption. A key component of the study will be the use of computational fluid dynamics CFD analysis for optimizing the data center cooling system.
机译:服务器技术的进步导致了获取服务器设备趋势的成本,而数据中心规模经济则显着降低了劳动力成本。这使得能量的成本作为优化的下一个目标。通过操作IT设备驱动能源成本,该开关设备为设备提供不间断电源,以及冷却IT设备。在典型的数据中心,在冷却时花费了几乎40%的功耗。此外,冷却效果是确定数据中心的寿命的第一阶因子。行业的新兴趋势之一是将数据中心运营移动到更高的环境温度,其中一些操作员希望将供应空气温度设置为高达40°C,同时提高冷却系统效率。本研究将显示,通过优化的冷却控制,通过优化数据中心冷却预算,可以降低数据中心级别的总体拥有成本,同时确保在增加环境温度条件下的性能损失。本文介绍了一种平台辅助热管理方法,采用新的传感器提供服务器气流和服务器出口温度,以改善数据中心冷却解决方案的控制。该数据也用作计算流体动力学(CFD)模型的输入,用于准确的预测性分析和未来变化方案的优化,从而提高数据中心效率并降低功耗。该研究的关键组成部分将是使用计算流体动力学CFD分析来优化数据中心冷却系统。

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