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Data center energy conservation utilizing a heat pipe based ice storage system

机译:利用基于热管的储冰系统实现数据中心节能

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Data centers constantly expand and upgrade their capacity due to the ever-increasing demand for remote file storage. It is estimated that around 50% of the total data center power consumption is for cooling. With this trend, a reduction in the cooling power consumption would result in a substantial reduction in overall power consumption, as well as C02 emission. With the focus going towards renewable and natural sources of energy, a heat pipe based ice storage system is being proposed. This system is being considered as one good solution to reduce the power consumption, as well as CO2 emission of data centers. This Ice storage system is aimed at utilizing the low temperature of cold areas to form ice and cold water. The freezing index, which is the combined duration and magnitude of below freezing temperatures at a given freezing season, would be the criteria for choosing the data center location. The data center will be constructed in cold regions wherein the freezing index is 400°C-days and above. The thermosiphon, which acts as a thermal diode, can effectively cool down the water until ice is formed. This ice storage system can be integrated with the existing cooling system and can be utilized as an alternate cooling system or a back-up cooling system. The existing cooling system may be utilized during the warmer periods of the year. The actual ice storage system container, which is made of concrete, is to be constructed under ground, and integrated in parallel with the existing cooling system.
机译:由于对远程文件存储的需求不断增长,数据中心不断扩展和升级其容量。据估计,数据中心总功耗中约有50%用于冷却。以这种趋势,冷却功率消耗的减少将导致总体功率消耗以及CO 2排放的显着减少。着眼于可再生能源和自然能源,正在提出一种基于热管的储冰系统。该系统被认为是减少数据中心功耗和二氧化碳排放的一种很好的解决方案。该储冰系统旨在利用寒冷地区的低温来形成冰和冷水。在给定的冻结季节,冻结指数(低于冻结温度的持续时间和大小的总和)将成为选择数据中心位置的标准。数据中心将建在冰冻指数为400°C天以上的寒冷地区。用作热二极管的热虹吸管可以有效地冷却水,直到形成冰为止。该储冰系统可以与现有的冷却系统集成在一起,并且可以用作备用冷却系统或备用冷却系统。现有的冷却系统可以在一年中的较暖期间使用。实际的储冰系统容器由混凝土制成,将在地下建造,并与现有的冷却系统并行集成。

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