首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >COUPLED SIMULATION OF OSCILLATORY FLOW, SEDIMENT TRANSPORT AND MORPHOLOGY EVOLUTION OF RIPPLES BASED ON THE IMMERSED BOUNDARY METHOD
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COUPLED SIMULATION OF OSCILLATORY FLOW, SEDIMENT TRANSPORT AND MORPHOLOGY EVOLUTION OF RIPPLES BASED ON THE IMMERSED BOUNDARY METHOD

机译:基于沉浸边界法的水流振荡流,泥沙输运和形态演化的耦合模拟

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In the present study, numerical simulations of oscillatory flow over a rippled bottom, coupled with bed and suspended sediment transport, as well as the resulting morphology evolution, are performed. The simulations are based on the numerical solution of the Navier-Stokes equations and the advection-diffusion equation for the suspended load, while empirical formulas are used for the bed load. The bed morphological evolution is obtained by the numerical solution of the conservation of sediment mass equation. A fractional time-step scheme is used for the temporal discretization, while finite differences are used for the spatial discretization on a Cartesian grid. The Immersed Boundary method is implemented for the imposition of fluid and sediment boundary conditions on the ripple surface. Two types of ripples are examined, i.e., ripples of parabolic shape with sharp crests and sinusoidal ripples, and cases of ripple length to orbital motion amplitude ratio of 1.6 and ripple height to orbital motion amplitude ratios of 0.16, 0.20 and 0.24, at Reynolds number equal to 5×10~3. The effect of ripple steepness and ripple shape on suspended sediment and ripple migration is discussed.
机译:在本研究中,进行了在波纹状底部的振荡流动的数值模拟,并结合了床层和悬浮的泥沙运移,以及由此产生的形态演化。这些模拟是基于Navier-Stokes方程和对流扩散方程的悬架载荷的数值解,而经验公式则用于基础载荷。通过沉积物质量方程守恒的数值解获得了床层形态演化。分数时间步方案用于时间离散化,而有限差分用于笛卡尔网格上的空间离散化。浸入边界方法用于在波纹表面上施加流体和沉积物边界条件。研究了两种类型的波纹,即具有尖峰和正弦波纹的抛物线形波纹,以及在雷诺数下波纹长度与轨道运动振幅比为1.6以及波纹高度与轨道运动振幅比为0.16、0.20和0.24的情况等于5×10〜3讨论了波纹陡度和波纹形状对悬浮泥沙和波纹迁移的影响。

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