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ACHIEVING ULTRA-LOW ENERGY CONSUMPTION IN DATA CENTER MECHANICAL SYSTEMS THROUGH INDIRECT AIRSIDE ECONOMIZATION

机译:通过间接航空经济实现数据中心机械系统的超低能耗

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Data center cooling systems have long been burdened by high levels of redundancy requirements, resulting in inefficient system designs to satisfy a risk-adverse operating environment. As attitudes, technologies, and sustainability awareness change within the industry, data centers are beginning to realize higher levels of energy efficiency without sacrificing operational security. By exploiting the increased temperature and humidity tolerances of the information technology equipment (ITE), data center mechanical systems can leverage ambient conditions to operate in economization mode for increased times during the year. Economization provides one of the largest methodologies for data centers to reduce their energy consumption and carbon footprint. As outside air temperatures and conditions become more favorable for cooling the data center, mechanical cooling through vapor-compression cycles is reduced or entirely eliminated. One favorable method for utilizing low outside air temperatures without sacrificing indoor air quality is through deploying rotary heat wheels to transfer heat between the data center return air and outside air without introducing outside air into the white space. A metal corrugated wheel is rotated through two opposing airstreams with varying thermal gradients to provide a net cooling effect at significantly reduced electrical energy over traditional mechanical cooling topologies. To further extend the impacts of economization, data centers are also able to significantly raise operating temperatures beyond what is traditionally found in comfort cooling applications. The increase in the dry bulb temperature provided to the inlet of the information technology equipment, as well as an elevated temperature rise across the equipment significantly reduces the energy use within a data center.
机译:数据中心冷却系统长期以来一直受到高水平的冗余要求的负担,导致系统设计效率低下,无法满足不利于风险的操作环境。随着行业内态度,技术和可持续性意识的变化,数据中心开始在不牺牲运营安全性的前提下实现更高水平的能源效率。通过利用信息技术设备(ITE)不断提高的温度和湿度容忍度,数据中心机械系统可以利用环境条件以节能模式运行,从而在一年中增加了时间。经济节约为数据中心提供了最大的方法之一,以减少其能源消耗和碳足迹。随着外界温度和条件变得更有利于冷却数据中心,通过蒸汽压缩循环进行的机械冷却将减少或完全消除。在不牺牲室内空气质量的情况下利用低外部空气温度的一种有利方法是通过部署旋转热轮在数据中心返回空气和外部空气之间传递热量,而无需将外部空气引入空白空间。金属波纹轮通过两个相对的气流以不同的热梯度旋转,以提供比传统机械冷却拓扑结构显着降低的电能的净冷却效果。为了进一步扩大经济效益的影响,数据中心还能够大幅提高工作温度,使其超过舒适制冷应用中传统上所能达到的水平。提供给信息技术设备入口的干球温度的升高,以及整个设备上升高的温度升高,显着降低了数据中心内的能耗。

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