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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Reduced-scale model study on cable heat dissipation and airflow distribution of power cabins
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Reduced-scale model study on cable heat dissipation and airflow distribution of power cabins

机译:电缆散热和电力舱的气流分布的降低规模模型研究

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The current work study the heat dissipation characteristics and airflow distribution in a power cabin. By simplifying the cable structure, a 1:5 reduced-scale model was constructed based on the Archimedes number. Computational fluid dynamics (CFD) simulations were applied to the prototype power cabin. The 3D steady-state Reynolds average Navier-Stokes (RANS) equation is used to solve the ventilation flow, where the turbulence model is realizable k-epsilon. The CFD simulation of the prototype has been verified by the reduced-scale model. On this basis, several conclusions were drawn. The airflow distribution in the power cabin and cable arrangement cause a difference in the temperature distribution between the cables. The strong turbulence at the air inlet causes a significant temperature drop. The mechanical fan can effectively cool the cable to a certain extent, but cable temperature control should take into account the effects of ampacity and ventilation, as well as cable location.
机译:目前的工作研究了动力舱中的散热特性和气流分布。 通过简化电缆结构,基于Archimedes数构建1:5减小尺度模型。 计算流体动力学(CFD)模拟应用于原型电源舱。 3D稳态雷诺平均Navier-Stokes(RANS)方程用于解决通风流动,其中湍流模型是可实现的K-EPSILON。 通过降级模型验证了原型的CFD模拟。 在此基础上,绘制了几个结论。 电源舱和电缆布置中的气流分布导致电缆之间的温度分布差异。 空气入口处的强湍流导致显着的温度下降。 机械风扇可以在一定程度上有效地将电缆冷却,但电缆温度控制应考虑到余量和通风的影响,以及电缆位置。

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