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Numerical Simulation of the Fluvial Processes in the Channels by Sediment Mining

机译:沉积物对河道冲淤过程的数值模拟

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This study aims to experimentally and numerically investigate the fluvial processes of channels disturbed through sand or gravel mining. A two-dimensional numerical model is applied to simulate flume experiments. A moving boundary-fitted coordinate system is used to describe the channel changes. As a numerical scheme, the cubic interpolated pseudoparticle method is used to calculate the flow field and bed changes, which introduces little numerical diffusion. The numerical model is verified with experimental data. The inflow sediment from the upstream is trapped into a pit and the sediment deposit wedge migrated to the downstream with a steep submerged angle of repose. The numerical and experimental results show that the sediment deposit wedge in the pit migrates to the downstream under the condition of steady state. The adjustment time within the disturbed channels increases as the dimension of the pit is increased. The sediment mining pit migrates with speed in the steep channel. Moreover, the numerical experiments show that the migration speed is proportional to the sediment inflow. And the disturbed channels by the sediment mining are affected by the sediment inflow conditions of the upstream and adjusted to the new state of equilibrium.
机译:这项研究旨在通过实验和数值研究方式,研究受砂石或砾石开采干扰的河道的河床过程。二维数值模型被应用于模拟水槽实验。移动的边界拟合坐标系用于描述通道变化。作为一种数值方案,三次插值伪粒子法用于计算流场和床层变化,这几乎没有引起数值扩散。数值模型通过实验数据验证。从上游流入的沉积物被捕获到一个坑中,并且沉积物楔形物以陡峭的沉没静止角向下游迁移。数值和实验结果表明,在稳定状态下,基坑中的沉积物楔形物向下游迁移。随着凹坑尺寸的增加,扰动通道内的调节时间增加。沉积物矿坑在陡峭的河道中快速迁移。此外,数值实验表明,迁移速度与泥沙流入量成正比。沉积物开采扰动的河道受上游沉积物入流条件的影响,并调整到新的平衡状态。

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