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首页> 外文期刊>International journal of air-conditioning and refrigeration >Experimental Investigation Regarding Rack Pressure Resistance on Cooling Performance of a Container Data Center
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Experimental Investigation Regarding Rack Pressure Resistance on Cooling Performance of a Container Data Center

机译:机架压力对集装箱数据中心冷却性能的实验研究

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摘要

This paper experimentally investigates the effect of pressure resistance distribution by using perforated grilles with different porosities (F = 100%, 58% and 35.4%) in a container data center. The inlet and outlet temperature distribution, rack cooling index (RCI) and supply heat index (SHI) are used to evaluate the cooling performance under semi-contained and fully contained configurations. As a result, the airflow reversal phenomenon at the top cabinets is found, which is especially conspicuous for the case without perforated grilles due to the extremely low pressure resistance in the cabinet. By implementing perforated grilles at lower three cabinets, the airflow reversal can be eliminated, however, it cannot be completely removed. By applying perforated grilles with F = 35.4% at the top three cabinets can increase the pressure resistance at the cabinets ST where the airflow reversal is eliminated thoroughly. Yet, the performance of cabinets at rack A1 may degrade rapidly due to much stronger hot-exhaust recirculation. Hence, the fully contained configuration is applied. Note that the airflow reversal is more severe for the case without perforated grilles. By arranging the perforated grilles with F = 35.4%, the corresponding RCI and SHI may reach the ideal values of 100% and zero, respectively. Therefore, the perforated grilles with F = 35.4% are more reasonable for simulated racks under semi-contained and fully contained configurations when airflow reversal occurs.
机译:本文通过在容器数据中心中使用具有不同孔隙率(F = 100%,58%和35.4%)的多孔格栅来实验研究耐压分布的影响。入口和出口温度分布,机架冷却指数(RCI)和供热指数(SHI)用于评估半封闭和完全封闭配置下的冷却性能。结果,在顶部机柜中发现了气流逆转现象,由于机柜中的极低耐压性,对于没有穿孔格栅的情况尤其明显。通过在下部三个机柜中安装穿孔格栅,可以消除气流逆转,但是不能完全消除。通过在顶部的三个机柜中使用F = 35.4%的多孔格栅,可以提高机柜ST的耐压性,从而彻底消除了气流的逆转。然而,由于更强的热排气再循环,机架A1处的机柜性能可能会迅速下降。因此,将使用完全包含的配置。请注意,对于没有穿孔格栅的情况,气流逆流更为严重。通过将穿孔格栅的F设置为35.4%,相应的RCI和SHI可以分别达到100%和0的理想值。因此,当气流反向发生时,F = 35.4%的多孔格栅对于半封闭和完全封闭配置的模拟机架更为合理。

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