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Fundamental characteristics of mixed convective laminar flow in rotating curved pipes (scaling law and thermo-fluid structure)

机译:旋转弯管中混合对流层流的基本特征(结垢定律和热流体结构)

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摘要

The fluid flowing in rotating heated curved pipes is subjected to three body forces: centrifugal, Coriolis and buoyant forces. Fully developed laminar flow in rotating coiled pipes is investigated through similarity arguments and computational studies. The thermal boundary conditions at the wall are uniform wall heat flux axially and uniform wall temperature peripherally. Flow and heat transfer characteristics are elucidated for the case when they are governed by four parameters: Dean number, Prandtl number, body force ratio and buoyancy parameter. Detailed structures of Velocity and temperature fields are shown for wide range of these parameters.
机译:在旋转的加热弯曲管中流动的流体受到三种力的作用:离心力,科里奥利力和浮力。通过相似性论证和计算研究,研究了旋转盘管中充分发展的层流。壁的热边界条件是轴向均匀的壁热通量和周围均匀的壁温。阐明了当它们由四个参数控制时的流动和传热特性:迪恩数,普朗特数,体力比和浮力参数。显示了速度和温度场的详细结构,涵盖了这些参数的广泛范围。

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