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Costs and benefits of thermal energy storage for augmenting indirect/direct evaporative cooling systems

机译:用于增加间接/直接蒸发冷却系统的热能存储的成本和收益

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Most data center cooling systems are designed to match installed cooling capacity to peak cooling demand at the most challenging ambient condition which typically occurs for only a period of the diurnal cycle. Evaporative coolers are provide economical cooling but use large quantities of water and are generally constrained to the ASHRAE A2 limits [1]. Direct expansion `topping' systems are a common technology to extend the temperature-humidity range, however, direct expansion systems require substantial electrical power which negatively affects the operating costs. Phase change materials have potential for economical thermal energy storage. Used instead of direct expansion, thermal energy storage can reduce the cost of cooling energy. By storing cooling capacity, thermal energy storage enables time-shifting of cooling demands and extends the temperature-humidity limits for evaporative cooling beyond the ASHRAE A2 limits. An added benefit, thermal energy storage with indirect/direct evaporative coolers reduces water consumption.
机译:大多数数据中心冷却系统旨在将已安装的制冷能力与在最具挑战性的环境条件下的峰值制冷需求相匹配,这通常仅在昼夜周期的一段时间内发生。蒸发冷却器可提供经济的冷却效果,但会消耗大量的水,并且通常被限制在ASHRAE A2的限值内[1]。直接扩展的“ topping”系统是扩展温度-湿度范围的常用技术,但是,直接扩展的系统需要大量的电力,这会对运行成本产生负面影响。相变材料具有经济地存储热能的潜力。使用热能存储代替直接膨胀,可以降低冷却能的成本。通过存储冷却能力,热能存储可以使冷却需求随时间变化,并将蒸发冷却的温度湿度限制扩展到ASHRAE A2限制之外。具有间接/直接蒸发式冷却器的热能存储可带来额外的好处,可减少水的消耗。

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