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A spectral multidomain penalty method solver for the simulation of the velocity attenuation in hyporheic flows

机译:一种光谱多麦田惩罚方法求解旋流速度衰减模拟

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A hydrodynamic model, based on a spectral multidomain penalty method (SMPM), is proposed to study the dissipation of the velocity fluctuations at the hyporheic zone. The model is based on the one dimensional Navier Stokes equations, assuming incompressibility and a hydrostatic approximation. The spatial discretization of the governing equations is done via the SMPM that is a multidomain collocation approach based on discontinuous non-overlapping subdomains that are connected by a penalty term that ensures stability of the solution by imposing weak continuity at the subdomain interfaces. The temporal discretization of the equations is handled with a high-order fractional time step technique. A spectral filter is used to stabilize the solution when spurious oscillations appear in the solution. A sinusoidal pulse is imposed at the water/sediment interface as a boundary condition, and the flow dynamics was evaluated under different conditions of kinematic viscosity. A progressive damping of the velocity fluctuations was observed in all cases, until full dissipation is reached. At that point, the flow can be governed by Darcy's law.
机译:提出了一种基于光谱多麦田惩罚方法(SMPM)的流体动力学模型,研究了低对象区的速度波动的耗散。该模型基于一维Navier Stokes方程,假设不可压缩性和静水逼近。管理方程的空间离散化是通过SMPM完成的,该SMPM是一种基于由惩罚术语连接的不连续的非重叠子域的多麦田搭配方法,该子群通过惩罚术语来确保解决方案的稳定性。等式的时间离散化由高阶小数时间步长技术处理。当杂散振荡出现在解决方案中时,使用光谱滤波器稳定解决方案。在水/沉积物界面处施加正弦脉冲作为边界条件,在运动粘度的不同条件下评价流动动态。在所有情况下观察到速度波动的渐进阻尼,直到达到全耗散。此时,流程可以受到达西法律的管辖。

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