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Three-Dimensional Modeling of Nonuniform Sediment Transport in an S-Shaped Channel

机译:S形通道内非均匀泥沙输送的三维建模

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摘要

A three-dimensional numerical model was applied to compute uniform and nonuniform sediment transport and bed deformation in an S-shaped laboratory channel located at the University of Innsbruck, where detailed measurements of the velocity field and bed elevation changes were made. The channel had two bends, a trapezoidal cross section, and a slope of S = 0.005. Gravel with a mean diameter of 4.2 mm was used as movable bed material and for sediment feeding. Wu's formula for multiple grain sizes was compared with van Rijrfs formula using one grain size. Fairly good agreement was found between the computed and measured bed elevations for both approaches, whereas Wu's formula could further improve the numerical results. Looking at the physics of the erosion pattern, the computed scour areas were located slightly more downstream than what was observed in the physical model. The current study also includes several parameter tests: grid distribution in vertical, lateral, and longitudinal direction; time step; number of inner iterations/time step; active sediment layer thickness: and the Shields coefficient. The variation of those parameters gave some differences in the results, but the overall pattern of bed elevation changes remained the same.
机译:在因斯布鲁克大学的S形实验室通道中,使用三维数值模型来计算均匀和不均匀的泥沙输送和床变形,在此对速度场和床高变化进行了详细的测量。通道有两个弯曲,梯形横截面和S = 0.005的斜率。平均直径为4.2毫米的碎石用作可移动床材料和沉积物进料。将使用多种晶粒度的Wu公式与使用一种晶粒度的van Rijrfs公式进行了比较。在两种方法的计算和测量的床高之间都发现了相当好的一致性,而Wu的公式可以进一步改善数值结果。观察侵蚀模式的物理性质,计算出的冲刷区域位于比物理模型中观察到的区域稍下游的位置。当前的研究还包括几个参数测试:垂直,横向和纵向的网格分布;时间步内部迭代次数/时间步长;活性沉积物层厚度:和Shields系数。这些参数的变化使结果有所不同,但床高变化的总体模式保持不变。

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