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Numerical simulation of dam-break flow impacting a stationary obstacle by a CLSVOF/IB method

机译:用CLSVOF / IB方法数值模拟溃坝流对固定障碍物的影响

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In this paper we develop a Coupled Level Set and Volume Of Fluid and Immersed Boundary (CLSVOF/IB) method, and apply it to simulating the interaction between dam-break flow and stationary obstacles. The projection method which adopts the second-order Adams-Bashforth algorithm is performed for solving the Navier-Stokes equations on a fixed staggered Cartesian grid. The Point Successive Over-Relaxation (PSOR) method is then employed to solve the discretized linear system of the Poisson pressure equation. For fluid-fluid interface treatment, the CLSVOF model is implemented using the Tangent of Hyperbola for INterface Capturing (THINC) scheme with the Weighted Linear Interface Calculation (WLIC), and the level set function which is a distance function is used to calculate interface normal vectors. For solid-fluid interface treatment, we adopt the direct forcing IB method which can be easily extended to three-dimensional simulations. The artificial momentum forcing term is applied at certain points in cells containing both fluid and solid, which imposes a velocity condition to drive the solid body motion. The proposed CLSVOF/IB model is used to simulate dam-break flow and its interaction with stationary structures, and the results agree well with numerical and experimental data in the literature. (C) 2019 Elsevier B.V. All rights reserved.
机译:在本文中,我们开发了液位和沉浸边界的液位和体积的耦合方法(CLSVOF / IB),并将其应用于模拟溃坝流与固定障碍物之间的相互作用。进行了采用二阶Adams-Bashforth算法的投影方法,以求解固定的交错笛卡尔网格上的Navier-Stokes方程。然后,采用点连续过度松弛(PSOR)方法来求解泊松压力方程的离散线性系统。对于流体界面处理,CLSVOF模型是使用双曲线切线(THINC)方案和加权线性界面计算(WLIC)实现的,并且使用距离函数(即距离函数)来设置界面法线向量。对于固液界面处理,我们采用直接强制IB方法,该方法可以轻松扩展到三维仿真。人工动量强迫项适用于包含流体和固体的单元格中的某些点,这会施加速度条件来驱动固体运动。提出的CLSVOF / IB模型用于模拟溃坝水流及其与固定结构的相互作用,其结果与文献中的数值和实验数据吻合良好。 (C)2019 Elsevier B.V.保留所有权利。

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