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Experimental and Numerical Modeling of Surface Erosion

机译:表面侵蚀的实验与数值模拟

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摘要

In this paper, we present experimental and numerical techniques capable of modeling the transient fluid-particle interaction encountered in surface erosion at a particle and pore-scale. The experimental program was carried out utilizing digital particle image velocimetry (DPIV) to measure pore-scale fluid velocity and direct imaging of particles was used to determine particle positions in a particle bed subjected to flow conditions. Direct measurement of the motion of the two phases under conditions of high particle fraction in the particle bed were attained by instantaneous discrimination between the fluid and particle phases, which were refractive-index matched to allow full-field measurements. A two-dimensional transient fully coupled fluid-particle numerical model was utilized to explore the fundamental mechanisms of flood-induced erosion. The fluid was modeled at a pore-scale level using the lattice Boltzmann method (LBM). The particles were modeled using the discrete element method (DEM). Simulations were conducted on beds of different particle diameters and subjected to different fluid velocities to get a better understanding of the dynamics of sheet-flow and bed erosion.
机译:在本文中,我们介绍了能够对颗粒和孔隙尺度的表面侵蚀中遇到的瞬态流体-颗粒相互作用进行建模的实验和数值技术。该实验程序是利用数字粒子图像测速仪(DPIV)进行的,以测量孔尺度的流体速度,并且使用粒子的直接成像方法来确定受到流动条件影响的粒子床中的粒子位置。通过在流体相和颗粒相之间进行瞬时鉴别,可以直接测量在颗粒床中高颗粒率条件下两相的运动,这两个相的折射率匹配,可以进行全场测量。利用二维瞬态全耦合流体-颗粒数值模型来探讨洪水诱发侵蚀的基本机理。使用晶格玻尔兹曼方法(LBM)在孔隙水平对流体进行建模。使用离散元素方法(DEM)对粒子建模。在不同粒径的床上进行了模拟,并对其进行了不同的流体速度分析,以更好地了解薄板流动和床侵蚀的动力学。

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  • 会议地点 Orlando FL(US)
  • 作者单位

    Dept. of Civil and Environmental Engineering, Southern Methodist Univ., P.O. Box 750340, Dallas, TX 75205;

    Dept. of Mechanical Engineering, Southern Methodist Univ., Dallas, TX 75205;

    Graduate Student, Dept. of Mechanical Engineering, Southern Methodist Univ., Dallas, TX 75205;

    Dept. of Civil and Environmental Engineering,Southern Methodist Univ., Dallas, TX 75205;

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  • 正文语种 eng
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