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Numerical modelling of long waves amplification at Marina di Carrara Harbour

机译:滨海迪卡拉拉港长波放大的数值模拟

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In this paper we test two different numerical models for the assessment of the long waves climate inside a harbour, induced by nonlinear interaction of short waves. One model is based on the nonlinear Boussinesq Type Equations; given the properties of the incoming short waves it is able to model the growth of the long waves, and their propagation and amplification inside the harbour basin. The other model uses a simplified formula for the calculation of the incoming long waves, and solves the linearized Mild Slope Equation to reproduce the long waves penetration into the harbour. The models are applied to the harbour of Marina di Carrara (Italy), where a field measurement network of both short and long waves is operational since 2005. Short waves records are obtained by a directional buoy deployed at about 1 km offshore the harbour entrance, whereas the long waves measurements inside the basin are obtained from 8 pressure transducers installed along the harbour inner perimeter. About 3 years of measurements (December 2005 to October 2008) are considered in this paper. Both the models are shown to provide reasonable estimates of the long waves climate inside the harbour. Advantages and disadvantages of each are discussed. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在本文中,我们测试了两个不同的数值模型,用于评估由短波的非线性相互作用引起的港口内长波气候。一种模型基于非线性Boussinesq型方程;另一种模型基于非线性Boussinesq型方程。考虑到入射短波的特性,它能够模拟长波的增长及其在港湾盆地内的传播和放大。另一个模型使用简化的公式来计算传入的长波,并求解线性化的“缓坡”方程以重现长波穿透到港口的情况。这些模型已应用到了Marina di Carrara(意大利)的港口,该区域自2005年以来一直在运行短波和长波的现场测量网络。短波记录是通过部署在港口入口附近1 km处的定向浮标获得的,盆地内部的长波测量值是从沿港口内周边安装的8个压力传感器获得的。本文考虑了大约3年的测量(2005年12月至2008年10月)。两种模型都显示出对海港内长波气候的合理估计。讨论了每种方法的优缺点。 (C)2014 Elsevier Ltd.保留所有权利。

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