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Expanding the envelope for indirect/direct evaporative data center cooling using thermal energy storage

机译:使用热能存储膨胀用于间接/直接蒸发数据中心冷却的信封

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The current philosophy in the design of data center cooling systems matches installed cooling capacity to peak cooling demand at the most challenging ambient condition. This “design point” typically occurs only briefly during hotter months. Cooling capacity remains under-used most of the time. An indirect/direct evaporative cooler with thermal energy storage allow a reduced installed cooling capacity to meet the same need and extends the upper temperature limit. Stored cooling capacity enables load-leveling, or peak-shaving, of cooling demands. Phase change materials present a potential for thermal energy storage to achieve load-leveling at moderate cost. In addition, during days of moderate temperatures thermal energy storage can extend free-cooling capacity when evaporative cooling would otherwise use water. Indirect/direct evaporative coolers that incorporate thermal energy storage can extend the operational envelope beyond current limits and reduce water consumption.
机译:数据中心冷却系统设计的当前哲学与最具挑战性环境条件的达到峰值冷却需求的安装冷却能力相匹配。这个“设计点”通常仅在更热的月份短暂地发生。大部分时间都在使用的冷却能力保持不足。具有热能存储的间接/直接蒸发冷却器允许降低的安装冷却能力,以满足相同的需求并延长上温度限制。储存的冷却能力使得能够进行负载调平或峰值剃料。相变材料呈现热能储存的可能性,以实现适度成本的负载调平。此外,在中等温度的天数期间,热能储存可以在蒸发冷却时延长自由冷却能力,否则会使用水。结合热能储存的间接/直接蒸发冷却器可以将操作包络延伸超过电流限制并降低耗水量。

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