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On a class of ocean model instabilities that may occur when applying small time steps, implicit methods, and low viscosities

机译:在一类海洋模型中,应用较小的时间步长,隐式方法和低粘度可能会发生不稳定性

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摘要

The horizontal grid size in ocean models may be gradually reduced with increasing computer power. This allows simulations with less viscosity. The hyperbolic, free wave nature of the problem will become more dominant. However, as viscosities are reduced, instabilities may more easily occur. To avoid such instabilities, it is well known from the literature on numerical methods for ordinary differential equations that implicit methods have attractive stability properties. Therefore, it may be tempting to add implicitness into the time stepping also in low viscosity ocean modelling to improve the robustness. However, when using methods with implicit features and low viscosity, it may happen that models are stable for longer time steps, but become unstable as the time step is reduced. In the present paper, an explanation for this phenomenon is given. It is shown that the explanation may be valid when solving the shallow water equations on a C-grid.
机译:随着计算机功能的增强,海洋模型中的水平网格大小可能会逐渐减小。这样可以进行粘度更低的模拟。问题的双曲线,自由波动性质将变得更加明显。然而,随着粘度的降低,不稳定性可能更容易发生。为了避免这种不稳定性,从关于常微分方程数值方法的文献中众所周知,隐式方法具有吸引人的稳定性。因此,在低粘度海洋模型中也可能会在时间步长中添加隐含性以提高鲁棒性。但是,当使用具有隐式特征和低粘度的方法时,模型可能会在较长的时间步长上保持稳定,但随着时间步长的减少而变得不稳定。在本文中,给出了对此现象的解释。结果表明,当在C网格上求解浅水方程时,该解释可能是有效的。

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