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3D SPH Simulation of Dynamic Water Surface and Its Interaction with Underlying Flow Structure for Turbulent Open Channel Flows Over Rough Beds

机译:动态水面的3D SPH模拟及其与粗糙床流动流动流动结构的相互作用

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摘要

In this study, a fully 3D numerical model based on the Smoothed Particle Hydrodynamics (SPH) approach has been developed to simulate turbulent open channel flows over a fixed rough bed. The model focuses on the study of dynamic free surface behavior as well as its interaction with underlying flow structures near the rough bed. The model is improved from the open source code SPHysics (http://www.sphysics.org) by adding more advanced turbu-lence and rough bed treatment schemes. A modified sub-particle-scale (SPS) eddy viscosity model is proposed to reflect the turbulence transfer mechanisms and a modified drag force equation is included into the momentum equations to account for the existence of roughness elements on the bed as well as on the sidewalls. The computed results of various free surface patterns have been compared with the laboratory measurements of the fluctuating water surface elevations in the streamwise and spanwise directions of a rectangular open-channel flow under a range of flow conditions. The comparison has demonstrated that the proposed 3D SPH model can simulate well the complex free surface flows over a fixed rough bed.
机译:在该研究中,已经开发了一种基于平滑粒子流体动力学(SPH)方法的全3D数值模型,以模拟固定粗糙的床上的湍流开放通道流动。该模型侧重于动态自由表面行为的研究以及与粗糙床附近的底层流动结构的相互作用。通过添加更先进的Turbu-Lence和粗糙的床处理方案,从开源代码Sphysics(http://www.sphysics.org)改进了该模型。提出了一种改进的子粒子级(SPS)涡流模型以反映湍流传送机构,并且改进的拖曳力方程被包括在动量方程中,以解释床上床上的粗糙度元件以及侧壁上的存在。已经将各种自由表面图案的计算结果与在一系列流动条件下的矩形开口流动的流动和枝条流动的流动水表面升高的实验室测量结果进行了比较。比较已经证明,所提出的3D SPH模型可以模拟复杂的自由表面在固定粗糙的床上流动。

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