用相位解析模型解释谱波预报模型结果

D. Chalikov, K. Bulgakov, К. V. Fokina
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引用次数: 0

摘要

本文用相位解析模型对波谱预报模型的结果进行了解释。频谱模型提供了势能分布在角度和频率方面的演变信息,但这种模型中没有关于几何和统计波特征的信息。这些信息必须通过额外的、通常未经证实的假设来提取。提出了将谱信息转换成由相位随机分布的一组线性模态组成的二维波场的计算方法。波场是不真实的,因为它不具有非线性性质,例如,各种不对称性质,如增加峰度。然后将基于波谱再现的线性波场作为精确相位分解模型的初始条件。正式适用于这种计算的精确模型是繁琐和低效的,实际上限制了它们的广泛和常规应用。这种限制可以通过使用一种基于二维方程的新型三维波浪模拟来克服。二维模型再现的波场统计特征与三维精确模型的结果相似,并且运行速度快了几倍。最后给出了在波罗的海使用该方法解译谱波预报的实例。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interpretation of the spectral wave forecast model results using the phase-resolving model
The paper presents an interpretation of the results of spectral wave-forecast model using the phase-resolving model. Spectral models provide the information on the evolution of the potential energy distribution in terms of angle and frequency though the information about the geometry and statistical wave characteristics in such models are not available. This information has to be extracted through the additional, often unsubstantiated, hypotheses. The proposed computational procedure transforms spectral information into a two-dimensional wave field which consists of a set of linear modes with randomly distributed phases is proposed. The wave field is not realistic since it does not have non-linear properties, for example, various asymmetry properties such as increased kurtosis. Afterwards the linear wave field reproduced on the basis of the wave spectrum is set as the initial condition for the exact phase-resolving model. The exact models formally suitable for such calculations are cumbersome and inefficient and that practically restricts their broad and regular application. This restriction can be overcome by using a new type of 3D wave simulation based on 2D equations. The 2D model reproduces the statistical characteristics of the wave field similar to the results of the 3D exact model and runs several times faster. The examples of using the developed method of interpretation of the spectral wave forecast in the Baltic Sea are demonstrated.
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