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DNS of buoyancy-dominated turbulent flows on a bluff body using the immersed boundary method

机译:使用沉浸边界方法在钝体上以浮力为主的湍流的DNS

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摘要

A novel immersed boundary (IB) method has been developed for simulating multi-material heat transfer problem - a cylinder in a channel heated from below with mixed convection. The method is based on a second-order velocity/scalar reconstruction near the IB. A novel algorithm has been developed for the IB method to handle conjugate heat transfer. The fluid-solid interface is constructed as a collection of disjoint faces of control volumes associated to different material zones. Coupling conditions for the material zones have been developed such that continuity and conservation of the scalar flux are satisfied by a second-order interpolation. Predictions of the local Nusselt number on the cylinder surface show good agreement with the experimental data. The effect of the Boussinesq approximation on this problem was also investigated. Comparison with the variable density formulation suggests that, in spite of a small thermal expansion coefficient of water, the variable density formulation in a transitional flow with mixed convection is preferable.
机译:已经开发出一种新颖的浸入边界(IB)方法来模拟多材料传热问题-混合对流从下方加热通道中的圆柱体。该方法基于IB附近的二阶速度/标量重建。已经为IB方法开发了一种新颖的算法来处理共轭传热。流体-固体界面构造为与不同材料区域相关联的控制体积的不相交面的集合。已经开发出用于材料区域的耦合条件,以便通过二阶插值满足标量通量的连续性和守恒性。汽缸表面局部Nusselt数的预测与实验数据显示出很好的一致性。还研究了Boussinesq逼近对此问题的影响。与可变密度制剂的比较表明,尽管水的热膨胀系数小,但在具有混合对流的过渡流中的可变密度制剂是优选的。

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