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Modelling granular sediment transport over water-worked gravels

机译:模拟水基碎石上的颗粒状沉积物传输

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摘要

This paper reports a numerical model that calculates the transport paths of individual granular particles over a natural water-worked gravel surface. Surface topography is measured using digital photogrammetry and incorporated into a computational fluid dynamics (CFD) scheme by the application of a porosity algorithm. The predicted hydraulics determine the forces acting on each particle enabling the particle trajectory to be solved by Langrangian transport equations. The methodology demonstrates the importance of including complex topography in the numerical scheme as topographically induced hydraulic acceleration and deceleration affect both the transport mechanism and subsequent trajectory of the particle. Hydraulically induced hops, where the particle is entrained into a localized shear layer around a bed particle, are demonstrated to be important in transporting granular sediment across the bed and in re-starting sediment transport if the particle has fallen into a hydraulically sheltered region. Copyright (c) 2005 John Wiley & Sons, Ltd.
机译:本文报告了一个数值模型,用于计算单个粒状颗粒在天然水处理砾石表面上的传输路径。使用数字摄影测量法测量表面形貌,并通过应用孔隙率算法将其合并到计算流体动力学(CFD)方案中。预测的水力确定作用在每个粒子上的力,从而使粒子轨迹能够通过朗朗日输运方程求解。该方法论证明了在数值方案中包括复杂地形的重要性,因为地形诱发的水力加速度和减速度会影响颗粒的传输机制和后续轨迹。事实证明,水力诱发的啤酒花将颗粒夹带到床层颗粒周围的局部剪切层中,对于颗粒状沉积物在整个床层中的运输以及重新开始沉积物的运输(如果颗粒落入水力遮挡区域)而言,是很重要的。版权所有(c)2005 John Wiley&Sons,Ltd.

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