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Numerical modeling of open-channel flows with fixed and movable beds.

机译:固定床和活动床明渠水流的数值模拟。

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摘要

This work presents numerical models for the analysis of steady and unsteady flow in open channels with fixed and movable beds. The fixed bed model numerically solves the two-dimensional unsteady flow equations by the explicit MacCormack scheme. The unsteady model is used to simulate steady flow by letting the solution converge to a steady state. The model uses governing equations in a channel-fitted coordinate system, convenient for computing flows in curved and meandering channels. A simple algebraic transformation of physical domain into a rectangular computational domain is discussed for application of the model to converging and diverging channels. Applicability of the model to simulate steady and unsteady, subcritical and supercritical flows is demonstrated. The movable bed models solve the flow equations along with the sediment continuity equation to predict bed level changes. The one-dimensional coupled movable bed model presented in this study solves all the governing equations simultaneously. This model is applied to compute bed level changes in straight alluvial channels due to aggradation and degradation. The two-dimensional, quasi-steady model assumes steady flow conditions during the bed level computations and the water-flow and sediment-transport equations are not coupled. Applicability of this model to predict long term bed evolution in curved alluvial channels is demonstrated. Comparison of numerical and experimental results shows that the models presented in this study satisfactorily simulate the basic features of many practical problems.
机译:这项工作提出了数值模型,用于分析具有固定床和活动床的明渠中的稳定和非稳定流动。固定床模型通过显式MacCormack方案在数值上求解了二维非定常流动方程。非稳态模型通过让解收敛到稳态来模拟稳态流。该模型在通道拟合坐标系中使用控制方程,便于计算弯曲和弯曲通道中的流量。讨论了将物理域转换为矩形计算域的简单代数转换,以将模型应用于收敛和发散通道。证明了该模型对模拟稳态和非稳态,亚临界和超临界流动的适用性。可移动床层模型将求解水流方程以及沉积物连续性方程,以预测床层水位变化。本研究提出的一维耦合移动床模型可以同时求解所有控制方程。该模型适用于计算由于冲积和退化导致的直冲积河床水位变化。二维准稳态模型在计算床面高度时假定水流条件稳定,水流和泥沙输送方程式没有耦合。证明了该模型在预测弯曲冲积河道中长期河床演化的适用性。数值和实验结果的比较表明,本研究中提出的模型令人满意地模拟了许多实际问题的基本特征。

著录项

  • 作者单位

    Washington State University.;

  • 授予单位 Washington State University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 1989
  • 页码 146 p.
  • 总页数 146
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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