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A conservative nonlinear filter for the high-frequency range of wind wave spectra

机译:风波频谱高频范围的保守非线性滤波器

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Filtering of the high-frequency part of a wind wave spectrum may be useful in a numerical wind wave model for various reasons. First, it can be used to augment (or be part of) a parameterization of the resonant nonlinear interactions, that are essential to third-generation wind wave models. Second, when combined with a dynamic time stepping scheme for source term integration, it may result in smoother (and hence faster) wave model integration. In this study, such a filter is proposed, based on the traditional Discrete Interaction Approximation (DIA) for the resonant four-wave nonlinear interactions. This filter retains all conservative properties of the interactions. For small time steps and/or smooth spectra, it is formulated as a traditional source term. For larger time steps and/or non-smooth spectra it is formulated as a filter. This formulation guarantees stability of the filter itself and will enhance overall computational stability in a full wave model. The stability properties of this filter are illustrated using traditional wave growth computations. Examples are given where the filter improves model economy, and where it is shown to remove spurious high-frequency noise from a wave model. Published by Elsevier Ltd.
机译:由于各种原因,在数值风波模型中,风波频谱的高频部分的滤波可能很有用。首先,它可以用于增强(或作为一部分)共振非线性相互作用的参数化,这对于第三代风波模型至关重要。其次,当与动态时间步长方案结合以进行源项积分时,可能会导致更平滑(因而更快)的波浪模型积分。在这项研究中,基于传统的离散相互作用近似(DIA)提出了这样一种滤波器,用于谐振四波非线性相互作用。该过滤器保留了交互的所有保守属性。对于较小的时间步长和/或平滑的光谱,将其公式化为传统的源术语。对于较大的时间步长和/或不平滑的光谱,将其公式化为滤波器。该公式保证了滤波器本身的稳定性,并将增强全波模型中的整体计算稳定性。使用传统的波增长计算来说明此滤波器的稳定性。给出了一些示例,其中滤波器改善了模型经济性,并显示了从波形模型中消除寄生高频噪声的地方。由Elsevier Ltd.发布

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