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Investigation of physical issues of the initial conditions of free water surface due to underwater disturbances on the basis of SPH numerical simulation of the phenomenon

机译:基于SPH数值模拟的水下扰动引起的自由水面初始条件物理问题研究

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The current paper discusses the physical impacts of the various initial boundary conditions of the free surface of a waterbody on the initiation and propagation characteristics of water waves due to the underwater perturbations. Differences between traditional point of view and applied numerical method in this paper for exertion the initial conditions of the generated waves by surface deformation were surveyed in the Lagrangian domain vs. Eulerian. In this article, the smoothed-particle hydrodynamics (SPH) technique was applied for simulating of wave generation process using initial boundary condition of water surface deformation through utilizing DualSPHysics numerical code and comparing the modeling results with recorded data. As a distinct approach, we studied the effects of discrete water particles on properties of produced surface waves by using the Lagrangian analytical capability of SPH model. Illustrative compatibility on simulation results with experimental data proves that meshless techniques such as applied in DualSPHysics software can reproduce physical properties of the event very well, and this is a suitable alternative to existing classical approaches for prediction of shock occurrences with nonlinear behavior such as generated surface water waves by underwater disturbance. Besides, the waveforms and their characteristics behave more realistic by considering the thrown upward water mass which was not directly considered in old formula and theories. The results of numerical modeling indicated rational agreement between numerical and empirical data proving that a complicated nonlinear phenomenon could be predicted by an SPH model which modified initial boundary conditions were supposed into the model with actual assumptions.
机译:本文讨论了水体自由表面的各种初始边界条件对由于水下扰动引起的水波的形成和传播特性的物理影响。在拉格朗日域与欧拉域中,研究了传统观点与应用数值方法在利用表面变形产生波的初始条件方面的差异。本文利用光滑粒子流体动力学(SPH)技术,利用DualSPHysics数值代码,利用水面变形的初始边界条件,利用水面变形的初始边界条件模拟波浪产生过程。作为一种独特的方法,我们使用SPH模型的拉格朗日分析能力研究了离散水颗粒对产生的表面波特性的影响。模拟结果与实验数据的说明性兼容性证明,例如DualSPHysics软件中应用的无网格技术可以很好地重现事件的物理属性,这是现有的经典方法的合适替代方法,该方法可以预测具有非线性行为(如生成的表面)的冲击发生水波受到水下干扰。此外,考虑到向上抛起的水团,这些波形及其特性表现得更真实,而旧式和理论中并未直接考虑这些问题。数值模拟结果表明,数值和经验数据之间存在合理的一致性,证明可以通过SPH模型预测复杂的非线性现象,而SPH模型是在实际假设的基础上假设修改了初始边界条件的。

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