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A new formulation for vegetation-induced damping under combined waves and currents

机译:波流作用下植被诱导阻尼的新公式

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摘要

Based on energy conservation a new analytical formulation for the evaluation of wave damping under the combined effect of waves and both following and opposing currents is presented. The formulation obtained for regular and random waves allows the derivation of analytical expressions for the vegetation drag coefficient as a function of wave damping parameters. These parameters are calibrated using a unique experimental set obtained in a large-scale wave basin considering the interaction of waves and currents with real vegetation representative of salt marshes, namely Spartina anglica and Puccinellia maritime. Comparisons show the quality of the analytical formulation under different hydrodynamic conditions, vegetation species and various Reynolds numbers formulated in terms of plant characteristics such as the deflected plant length accounting for the flow-induced bending of the vegetation. The new formulation can be useful to be implemented in phase averaged and phase resolving numerical models of wave propagation. (C) 2015 Elsevier B.V. All rights reserved,
机译:在节能的基础上,提出了一种新的解析公式,用于评估在波浪以及顺流和逆流共同作用下的波浪阻尼。为规则波和随机波获得的公式允许推导植被阻力系数的解析表达式,作为波浪阻尼参数的函数。这些参数是使用在大型波浪盆地中获得的独特实验集进行校准的,其中考虑了波浪和洋流与代表盐沼的真实植被(即斯巴蒂纳海棠和海上普氏金枪鱼)的相互作用。比较表明,在不同的水动力条件下,植物种类和各种雷诺数下,根据植物特性(例如因植物流动引起的弯曲植物长度的偏斜)而制定的分析制剂的质量。新的公式对于在波传播的相位平均和相位解析数值模型中实施很有用。 (C)2015 Elsevier B.V.保留所有权利,

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