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A Generalized Multiple Discrete Interaction Approximation for resonant four-wave interactions in wind wave models

机译:风波模型中共振四波相互作用的广义多重离散相互作用逼近

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摘要

For several decades, the Discrete Interaction Approximation (DIA) for nonlinear resonant four-wave interactions has been the engine of third-generation wind-wave models. The present study presents a Generalized Multiple DIA (GMD) which expands upon the DIA by (i) expanding the definition of the representative quadruplet, (ii) formulating the DIA for arbitrary water depths, (iii) providing complimentary deep and shallow water scaling terms and (iv) allowing for multiple representative quadruplets. The GMD is rigorously derived to be an extension of the DIA, and is backward compatible with it. The free parameters of the GMD are optimized holistically, by optimizing full model behavior in the WAVEWATCH III? wave model as reported in a companion paper. Here, a cascade of GMD configurations with increasing complexity, accuracy and cost is presented. First, the performance of these configurations is discussed using idealized test cases used to optimize the GMD. It is shown that in deep water, GMD configurations can be found which remove most of the errors of the DIA. The GMD is also capable of representing four-wave interactions in extremely shallow water, although some remaining spurious behavior makes applications of this part of the GMD less suitable for operational wave models. Finally, several GMD configurations are applied to an idealized hurricane case, showing that results from idealized test cases indeed are representative for real-world applications, and confirming that such GMD configurations are economically feasible in operational wind wave models. Finally, the DIA results in surprisingly large model errors in hurricane conditions.
机译:几十年来,用于非线性共振四波相互作用的离散相互作用近似(DIA)一直是第三代风波模型的引擎。本研究提出了广义多重DIA(GMD),它通过以下方式扩展了DIA:(i)扩展代表性四联体的定义;(ii)为任意水深制定DIA;(iii)提供免费的深水和浅水结垢术语(iv)允许多个代表性的四联体。 GMD严格衍生为DIA的扩展,并向后兼容。通过优化WAVEWATCH III中的完整模型行为,可以全面优化GMD的自由参数。随行论文中报告的波动模型。在此,提出了一系列具有越来越高的复杂性,准确性和成本的GMD配置。首先,使用用于优化GMD的理想测试用例讨论这些配置的性能。结果表明,在深水中,可以找到GMD配置,该配置可以消除DIA的大部分错误。 GMD还能够表示极浅水域中的四波相互作用,尽管某些残留的杂散行为使GMD这部分的应用不太适合于操作波模型。最后,将几种GMD配置应用于理想化的飓风案例,这表明理想化测试案例的结果确实代表了实际应用,并证实了此类GMD配置在运行风波模型中经济可行。最终,DIA在飓风条件下导致了令人惊讶的大模型误差。

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