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Parameterizing unresolved obstacles with source terms in wave modeling: A real-world application

机译:使用波形建模中的源术语参数化未解决的障碍:真实世界的应用程序

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摘要

Parameterizing the dissipative effects of small, unresolved coastal features, is fundamental to improve the skills of wave models. The established technique to deal with this problem consists in reducing the amount of energy advected within the propagation scheme, and is currently available only for regular grids. To find a more general approach, Mentaschi et al., 2015b formulated a technique based on source terms, and validated it on synthetic case studies. This technique separates the parameterization of the unresolved features from the energy advection, and can therefore be applied to any numerical scheme and to any type of mesh. Here we developed an open-source library for the estimation of the transparency coefficients needed by this approach, from bathymetric data and for any type of mesh. The spectral wave model WAVEWATCH III was used to show that in a realworld domain, such as the Caribbean Sea, the proposed approach has skills comparable and sometimes better than the established propagation-based technique.
机译:参数化小,未解决的沿海特征的耗散效果,是提高波浪模型技能的基础。处理此问题的既定技术包括减少传播方案中建立的能量量,目前仅适用于常规网格。找到一种更通用的方法,Mentaschi等人,2015B基于源术语制定了一种技术,并在综合案例研究中验证。该技术将未解决的特征的参数化与能量平程分开,因此可以应用于任何数值方案和任何类型的网格。在这里,我们开发了一个开源库,用于估计这种方法所需的透明度系数,来自碱基数据和任何类型的网格。光谱波模型Wavewatch III用于表明,在诸如加勒比海之类的RealWorld领域,所提出的方法具有比较可比的技能,并且有时优于既定的基于传播的技术。

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