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A THERMO-MECHANICAL STUDY ON VERTICALLY SPLIT DISTRIBUTION-WET COOLING MEDIA USED IN DATA CENTERS

机译:数据中心中垂直分布-湿式冷却介质的热力学研究

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Direct evaporative cooling (DEC) is widely used in the data center cooling units to maintain the air condition inside the data centers. Often, the flow rate of the water over the wet cooling media in this DEC process is frequently varied to maintain the air condition inside the data centers based on changing weather conditions. Though the adopted method helps to control the air temperature and relative humidity, the scale formation occurs on the surface of wet cooling media due to the frequent variation of the flow rate and deposition of minerals present in the water at low flow rate values, which increases the total weight of the wet cooling media and it can lead to a wet cooling media collapse. In this paper an alternative and simplified method to control the air condition is presented. A vertically split wet cooling media is designed and tested in a commercial CFD tool to analyze the temperature and relative humidity parameters of the inlet and outlet air to the wet cooling media, in this approach the sections of the media can either be completely wet or completely dry which can potentially avoid the scale formation on the surface of the wet cooling media. In addition to the temperature and relative humidity parameters against the air flow rates, the pressure drop and cooling efficiency values for varied air flow rates are studied. The vertically split wet cooling media configurations are achieved by sectioning the media in to equal and unequal sections. In the equal configuration, media has been tested for 0%, 50% and 100% wetting conditions, and in the unequal configuration, media has been tested for 0%, 33%, 66% and 100% wetting conditions. The test results are used to emphasis the advantage of this staged wetting method and gives a possible solution to the scale formation problem on the wet cooling media during the direct evaporative cooling process in the data center.
机译:直接蒸发冷却(DEC)广泛用于数据中心冷却单元,以维持数据中心内的空气状态。通常,在该DEC过程中湿冷冷却介质上的水的流速经常变化,以基于变化的天气条件来维持数据中心内的空调。虽然采用的方法有助于控制空气温度和相对湿度,但由于在低流量值下水中存在的流速和矿物质沉积的频繁变化,湿冷介质的表面发生在湿冷冷却介质的表面上。增加湿冷冷却介质的总重量和它可以导致湿冷的冷却介质塌陷。本文提出了一种控制空气条件的替代和简化方法。在商业CFD工具中设计和测试垂直分开的湿冷冷却介质,以分析入口和出口空气的温度和相对湿度参数,在湿冷冷却介质中,在这种方法中,介质的部分可以完全湿润或完全干燥,可以避免湿冷冷却介质表面上的刻度形成。除了抵抗空气流速的温度和相对湿度参数之外,研究了变化空气流速的压降和冷却效率。通过将介质切断到相等和不等的部分来实现垂直分开的湿冷介质配置。在相等的结构中,已经测试了培养基的0%,50%和100%润湿条件,并且在不平等的构型中,培养基已经过0%,33%,66%和100%润湿条件。测试结果用于强调该分阶段润湿方法的优点,并在数据中心直接蒸发冷却过程中给出湿冷冷却介质上的刻度形成问题的可能解决方案。

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