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Physically Based Sand Slide Method in Scour Models Based on Slope-Limited Diffusion

机译:基于坡度有限扩散的冲刷模型的物理基于砂滑动方法

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摘要

In scour simulation models, a sand slide step is necessary to treat the bed areas where the slope exceeds the angle of repose. This exceedance is due to the fact that the Exner equation does not take into consideration the angle of repose. Methods for sand slide should conserve mass, be based on physics, and give a unique final bed configuration. However, there is no existing method that satisfies all these requirements. Most previous methods use either a modified bed-load transport rate based on bed slope or purely geometric corrections. This work proposes a new method that solves a slope-limited diffusion equation. The diffusivity is conditioned upon bed slope. The method is based on the physics of sand slide and its diffusive nature. Special numerical schemes, linear gradient scheme (LGS) and Gauss nonlinear gradient scheme (GNGS), were tested for the evaluation of bed elevation gradient, which is used in the conditional function for diffusivity. LGS gives severe bed distortion due to the time lag for sand particles to slide in the diagonal direction of mesh. GNGS greatly alleviates this problem by using an extended stencil. The new sand-slide method was implemented in a 3D scour model and tested with two cases. Results show that the new sand slide method, in conjunction with the GNGS scheme or the combination of GNGS and LGS, produces efficient, physically correct, and mesh-independent results. The simulated scour hole development compares well with the experiment.
机译:在冲刷仿真模型中,砂滑动步骤是治疗坡度超过休闲角度的床区。这种超越是由于exer方程没有考虑到休息的角度。砂幻灯片的方法应保护质量,基于物理,并提供独特的最终床配置。但是,没有满足所有这些要求的现有方法。最先前的方法使用基于床坡或纯几何校正的改进的床上负载运输速率。这项工作提出了一种解决坡度有限扩散方程的新方法。扩散率在床斜率上被调节。该方法基于沙载幻灯片的物理及其扩散性质。测试特殊的数值方案,线性梯度方案(LGS)和高斯非线性梯度方案(GNGS),用于评估床升高梯度,其用于扩散率的条件函数。由于砂颗粒的时间滞后,LGS为砂颗粒沿啮合方向滑动而产生严重的床变形。 GNGS通过使用延长的模板大大减轻了这个问题。新的砂滑动方法在3D冲刷模型中实现并用两种情况进行了测试。结果表明,新的砂载方法与GNGS方案或GNG和LGS的组合一起产生有效,物理校正和与网格无关的结果。模拟冲浪孔开发与实验相比很好。

著录项

  • 来源
    《Journal of Hydraulic Engineering》 |2020年第11期|04020074.1-04020074.11|共11页
  • 作者单位

    Penn State Univ Dept Civil & Environm Engn State Coll PA 16802 USA;

    Penn State Univ Dept Civil & Environm Engn State Coll PA 16802 USA;

    Penn State Univ Dept Civil & Environm Engn Inst Computat & Data Sci 223B Sackett State Coll PA 16802 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Sand slide; Sediment transport; Diffusive model; Angle of repose;

    机译:沙幻灯片;沉积物运输;扩散模型;休息角;

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