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An asymptotic iteration method for the numerical analysis of near-critical free-surface flows

机译:近临界自由表面流数值分析的渐近迭代法

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摘要

Satisfying the boundary conditions at the free surface may impose severe difficulties to the computation of turbulent open-channel flows with finite-volume or finite-element methods, in particular, when the flow conditions are nearly critical. It is proposed to apply an iteration procedure that is based on an asymptotic expansion for large Reynolds numbers and Froude numbers close to the critical value 1. The iteration procedure starts by prescribing a first approximation for the free surface as it is obtained from solving an ODE that has been derived previously by means of an asymptotic expansion (Crillhofer and Schneider, 2003). The numerical solution of the full equations of motion then gives a surface pressure distribution that differs from the constant value required by the dynamic boundary condition. To determine a correction to the elevation of the free surface we next solve an ODE that is obtained from the asymptotic analysis of the flow with a prescribed pressure disturbance at the free surface. The full equations of motion are then solved for the corrected surface, and the procedure is repeated until criteria of accuracy for surface elevation and surface pressure, respectively, are satisfied. The method is applied to an undular hydraulic jump as a test case.
机译:满足自由表面的边界条件可能会给使用有限体积或有限元方法的湍流明渠流动的计算带来严重困难,特别是在流动条件接近临界的情况下。对于较大的雷诺数和接近临界值1的弗洛德数,建议采用一种基于渐近展开的迭代程序。该迭代程序首先针对自由曲面的一阶近似值进行规定,因为它是通过求解ODE得到的以前是通过渐近展开来推导的(Crillhofer and Schneider,2003)。然后,完整运动方程的数值解给出了与动态边界条件所需的恒定值不同的表面压力分布。为了确定对自由表面的高度的校正,我们接下来求解一个ODE,该ODE是通过在自由表面上具有指定压力扰动的流动渐近分析获得的。然后针对校正后的表面求解完整的运动方程,并重复该过程,直到分别满足表面高程和表面压力的精度标准为止。该方法适用于波浪状水力跳跃作为测试案例。

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