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Semi-implicit direct forcing immersed boundary method for incompressible viscous thermal flow problems: A Schur complement approach

机译:不可压缩粘性热流问题的半隐式直接强迫沉浸边界方法:Schur补法

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摘要

An extended immersed boundary method utilizing a semi-implicit direct forcing approach for the simulation of confined incompressible viscous thermal flow problems is presented. The method utilizes a Schur complement approach to enforce the kinematic constraints of no-slip and the corresponding thermal boundary conditions for immersed surfaces. The developed methodology can be straightforwardly adapted to any existing incompressible time marching solver based on a segregated pressure-velocity coupling. The method accurately meets the thermal and the no-slip boundary conditions on the surfaces of immersed bodies for the entire range of Rayleigh numbers 10(3) = Ra = 10(6). Strategies for further increasing the computational efficiency of the developed approach are discussed. The method has been extensively verified by applying it for the simulation of a number of representative fully 3D confined natural convection steady and periodic flows. Complex dynamic phenomena typical of this kind of flow including vortical structures and convection cells and instability characteristics, were simulated and visualized and the results were found to compare favorably with results known from literature. (C) 2018 Elsevier Ltd. All rights reserved.
机译:提出了一种使用半隐式直接强迫方法的扩展沉浸边界方法,用于模拟有限的不可压缩粘性热流问题。该方法利用Schur补码方法对浸入的表面施加不滑动的运动学约束以及相应的热边界条件。基于分离的压力-速度耦合,可以将开发的方法直接适用于任何现有的不可压缩时间行进求解器。对于瑞利数10(3)<= Ra <= 10(6)的整个范围,该方法都能精确地满足浸入物体表面的热边界条件和防滑边界条件。讨论了进一步提高已开发方法的计算效率的策略。该方法已通过将其用于模拟许多代表性的完全3D约束自然对流稳态和周期性流动而得到了广泛验证。模拟和可视化了这种流动典型的复杂动力现象,包括旋涡结构和对流单元以及不稳定性特征,结果与文献中已知的结果相比具有优势。 (C)2018 Elsevier Ltd.保留所有权利。

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