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Incompressible SPH Model for Simulating Violent Free-Surface Fluid Flows

机译:模拟暴力自由表面流体流动的不可压缩SPH模型

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摘要

In this paper the problem of transient gravitational wave propagation in a viscous incompressible fluid is considered, with a focus on flows with fast-moving free surfaces. The governing equations of the problem are solved by the smoothed particle hydrodynamics method (SPH). In order to impose the incompressibility constraint on the fluid motion, the so-called projection method is applied in which the discrete SPH equations are integrated in time by using a fractional-step technique. Numerical performance of the proposed model has been assessed by comparing its results with experimental data and with results obtained by a standard (weakly compressible) version of the SPH approach. For this purpose, a plane dam-break flow problem is simulated, in order to investigate the formation and propagation of a wave generated by a sudden collapse of a water column initially contained in a rectangular tank, as well as the impact of such a wave on a rigid vertical wall. The results of simulations show the evolution of the free surface of water, the variation of velocity and pressure fields in the fluid, and the time history of pressures exerted by an impacting wave on a wall.
机译:在本文中,考虑了粘性重力流体中瞬态重力波传播的问题,重点是自由表面快速移动的流动。该问题的控制方程通过平滑粒子流体动力学方法(SPH)求解。为了对流体运动施加不可压缩性约束,应用了所谓的投影方法,其中通过使用分数步技术将离散的SPH方程及时积分。通过将其结果与实验数据以及通过SPH方法的标准(弱可压缩)版本获得的结果进行比较,评估了所提出模型的数值性能。为此,模拟了一个平面溃坝流问题,以研究由最初装在矩形水箱中的水柱突然坍塌而产生的波浪的形成和传播,以及这种波浪的影响。在坚硬的垂直墙上。模拟结果显示了水的自由表面的演变,流体中速度和压力场的变化以及冲击波在壁上施加压力的时间历程。

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