首页> 外文会议>ASME International Technical Conference and Exhibition on Packaging and Integration of Electronic and Photonic MicroSystems >CFD MODELING OF INDIRECT/DIRECT EVAPORATIVE COOLING UNIT FOR MODULAR DATA CENTER APPLICATIONS
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CFD MODELING OF INDIRECT/DIRECT EVAPORATIVE COOLING UNIT FOR MODULAR DATA CENTER APPLICATIONS

机译:用于模块化数据中心应用的间接/直接蒸发冷却装置的CFD建模

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An information technology (IT) container needs to be supplied with cold air to cool IT equipment housed in it. The type of cooling system to be used depends on many factors including geographical location of the modular data center. Data centers located in regions where the climate is cold benefit from use of air-side economization (ASE) and those located in hot and dry climate benefit from use of direct and/or indirect evaporative cooling (DIEC) systems. In terms of energy saving, ASE, direct evaporative cooling (DEC) system, and indirect evaporative (IEC) systems are better than compressor based cooling systems such as computer room air conditioning (CRAC) units and air handling units (AHU). In this study, an existing DIEC unit which can also be operated in ASE mode is modeled in a computational fluid dynamics (CFD) tool. The cooling unit is intended to be used for supplying cold air to a containerized data center with specified volume flow rate, dry-bulb temperature and relative humidity. The CFD model is compared with published data of the cooling unit to see how well the CFD model represents the actual system and few design improvement ideas are tested by modifying the CFD model and running simulations. Results show that supplying air horizontally or as a downdraft to an IT container has negligible effect on the overall system. Results also show that orientation of dampers and placement of blanking panels inside the mixing chamber could affect the lifespan of air filters.
机译:信息技术(IT)容器需要用冷空气供应,以冷却IT设备。要使用的冷却系统的类型取决于许多因素,包括模块化数据中心的地理位置。位于地区的数据中心,气候从使用空气侧经济化(ASE)和位于热和干燥的气候中使用的那些使用直接和/或间接蒸发冷却(DIEC)系统。在节能,ASE,直接蒸发冷却(DEC)系统和间接蒸发(IEC)系统方面优于基于压缩机的冷却系统,例如计算机空调(CRAC)单元和空气处理单元(AHU)。在该研究中,也可以在ASE模式下操作的现有DIEC单元在计算流体动力学(CFD)工具中进行建模。冷却单元用于将冷空气供应到具有规定体积流量,干泡温度和相对湿度的集装箱化数据中心。将CFD模型与冷却单元的公布数据进行比较,看看CFD模型如何代表实际系统,通过修改CFD模型和运行模拟来测试几个设计改进思路。结果表明,水平供应空气或作为IT集装箱的下游对整个系统的影响可忽略不计。结果还表明,混合室内的阻尼器的取向和照明面板的放置可以影响空气过滤器的寿命。

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