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    液冷阵列电子设备分流特性研究及优化

    Investigation and Optimization of Flow Distribution Characteristics in Liquid-cooled Array Electronic Equipment

    • 摘要: 在液冷阵列电子设备热管理领域,冷却液的分流效果对内部器件温度水平与电气性能有着重要的影响。文中聚焦于液冷阵列设备分流器的分流特性展开深度研究。通过数值分析方法,系统分析了在不同流量工况、流阻特性以及分流器结构形式下阵列设备的分流规律。研究结果表明:在分流器的分流静压腔中增加水滴形调压结构,可以显著改善系统分流效果。在同一支路等效水力直径下,支路的分流偏差度和分流不均系数会随着系统供液流量的增加而增大。同时,当支路压降增加时,系统的分流偏差度减小,分流均匀性得到提升。

       

      Abstract: In the thermal management of liquid-cooled array electronic equipment, the flow distribution efficiency of coolant liquid critically impacts both the internal device temperature levels and electrical performance. The flow distribution characteristics of liquid-cooled array equipment distributors are focused on in this paper. Through numerical analysis methods, the flow distribution patterns under varying operating conditions, flow resistance properties, and distributor structural configurations are systematically investigated. The results demonstrate that incorporating a water-drop-shaped pressure-regulating structure in the static pressure chamber of the distributor significantly enhances system flow diversion effect. Under the same equivalent hydraulic diameter of the branch, both the flow deviation and flow maldistribution coefficient of the branch increase with the rise of the system's supply flow rate. Meanwhile, when the pressure drop across the branch increases, the system's flow deviation decreases, and flow uniformity is improved.

       

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