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C1-PPU Schemes for Efficient Simulation of Coupled Flow and Transport with Gravity

机译:C1-PPU,用于高效模拟耦合流量和重力的运输

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It is revealed by recent studies that in the presence of counter-current flow due to buoyancy, nonlinear convergence problems may be pronounced when the popular PPU scheme is used to approximate the numerical flux The PPU numerical flux is non-differentiable across the co-current/counter-current flow regimes and thus may lead to oscillations or even divergence in the Newton iterations. Recently proposed methods address improved smoothness of the numerical flux. In this paper we devise and analyze an alternative numerical flux scheme called Cl-PPU that allows a smooth variation between the co-current/counter-current flow regimes as well as an optimal balance between the scalar nonlinearity and accuracy of the flux function The C1-PPU scheme involves a novel use of the flux limiter concept from the context of high-resolution methods. Numerical examples including 1D scalar transport problem and 2D heterogeneous problem with fully-coupled flow and transport are presented. The results indicate that in addition to smoothness, nonlinearity may also be critical for convergence behavior and thus needs to be considered in the design of an efficient numerical flux scheme. Moreover, the results show that our C1-PPU scheme exhibits superior convergence properties for large time steps compared to the other alternatives.
机译:最近的研究揭示了在由于浮力引起的逆流流情况下,当流行的PPU方案用于近似数字通量时,非线性收敛问题可能发音PPU数值不可分辨率在整流通量/反电流的流动制度,因此可能导致牛腹迭代甚至发散。最近提出的方法解决了数值通量的平滑性。在本文中,我们设计并分析了称为CL-PPU的替代数字磁通方案,其允许在C1的标量非线性和磁通函数的准确度之间的最佳平衡之间的平滑变化.C1 -PPU方案涉及从高分辨率方法的背景下的磁通限制器概念的新颖使用。呈现了包括1D标量传输问题的数值示例和具有完全耦合的流动和传输的2D异构问题。结果表明,除了平滑度之外,非线性也可能对收敛行为至关重要,因此需要考虑在设计有效的数字通量方案的设计中。此外,结果表明,与其他替代方案相比,我们的C1-PPU方案表现出大型时间步长的卓越收敛性。

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