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首页> 外文期刊>Earth Surface Dynamics >The role of velocity, pressure, and bed stress fluctuations in bed load transport over bed forms: numerical simulation downstream of a backward-facing step
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The role of velocity, pressure, and bed stress fluctuations in bed load transport over bed forms: numerical simulation downstream of a backward-facing step

机译:速度,压力和床应力波动在床形式上的床荷载传递中的作用:向后步骤下游的数值模拟

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摘要

Bed load transport over ripples and dunes in rivers exhibits strong spatial and temporal variability due to the complex turbulence field caused by flow separation at bedform crests. A turbulence-resolving flow model downstream of a backward-facing step, coupled with a model integrating the equations of motion of individual sand grains, is used to investigate the physical interaction between bed load motion and turbulence downstream of separated flow. Large bed load transport events are found to correspond to low-frequency positive pressure fluctuations. Episodic penetration of fluid into the bed increases the bed stress and moves grains. Fluid penetration events are larger in magnitude near the point of reattachment than farther downstream. Models of bed load transport over ripples and dunes must incorporate the effects of these penetration events of high stress and sediment flux.
机译:由于河床波峰分离造成的复杂湍流场,河流上的波纹和沙丘上的河床荷载运输表现出强烈的时空变化。向后步骤下游的湍流解析流模型,与整合单个沙粒运动方程的模型相结合,用于研究床荷载运动与分离流下游湍流之间的物理相互作用。发现大的床层负荷输送事件对应于低频正压力波动。流体向床层中的突然渗透会增加床层应力并移动谷物。在重新连接点附近,流体渗透事件的幅度大于下游。涟漪和沙丘上的地基载荷传输模型必须考虑到高应力和泥沙通量这些穿透事件的影响。

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