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Three-dimensional structure of wave-induced momentum flux in irrotational waves in combined shoaling-refraction conditions

机译:浅浅折射条件下非旋波中波动量通量的三维结构

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In the paper, the three-dimensional structure of the wave-induced momentum flux in irrotational waves propagating over a two-dimensional, irregular bathymetry is analyzed. The expansion method developed by de Vriend and Kitou [de Vriend, H.J., Kitou, N., 1990a. Incorporation of wave effects in a 3D hydrostatic mean current model. Delft Hydraulics Report H-1295. de Vriend, H.J., Kitou, N., 1990b. Incorporation of wave effects in a 3D hydrostatic mean current model. Proc. 22nd Int. Coast. Eng. Conf. ASCE, 1005-1018.] for unidirectional waves has been extended to derive expressions for velocity components in three-dimensional waves over sloping bottom. The vertical wave-induced momentum flux resulting from this solution has been shown to be vertically-varying (contrary to the 2D-V case) and to act as a counterbalance for the vertical variability of the other wave forcing terms in the momentum equations. Thus, the total wave forcing remains depth-invariant, but—contrary to the 'traditional' solution based on the radiation stress concept—it does not depend explicitly on the direction of wave propagation and is a simple function of gradients of wave energy and water depth only. One of the most important consequences of this fact is the lack of the longshore-current-generating force in the case of non-dissipative waves approaching a shore with a bottom profile uniform in the along-shore direction. To illustrate the meaning of the new solution, the wave forcing due to waves approaching a barred beach has been analysed in detail. Also, the present solution has been shown to give the same results as the one obtained by extending of the approach by Rivero and Arcilla [Rivera, F.J., Arcilla, A. S., 1995. On the vertical distribution of < uw > . Coast. Eng. 25, 137-152.] to three dimensions.
机译:本文分析了二维,不规则测深仪上传播的非旋波中波感应动量通量的三维结构。扩展方法由de Vriend和Kitou [de Vriend,H.J.,Kitou,N.,1990a。将波效应纳入3D静液压平均电流模型中。代尔夫特液压装置报告H-1295。 de Vriend,H.J.,Kitou,N.,1990年b。将波效应纳入3D静液压平均电流模型中。程序22nd Int。海岸。 。 Conf。 [ASCE,1005-1018。]已经扩展了单向波的应用,以导出倾斜底部上方三维波中速度分量的表达式。由该解决方案产生的垂直波感应动量通量已显示出垂直变化(与2D-V情况相反),并且可以抵消动量方程中其他波浪强迫项的垂直变化。因此,总的波强迫仍保持深度不变,但是与基于辐射应力概念的“传统”解决方案相反,它并不明确地取决于波传播的方向,而是波能和水的梯度的简单函数仅深度。这一事实的最重要的后果之一是,在非耗散波接近沿岸方向具有均匀底部轮廓的海岸的情况下,缺少长岸电流产生力。为了说明新解决方案的含义,已经详细分析了由于波浪接近禁止海滩而引起的波浪强迫。同样,本解决方案已显示出与通过扩展Rivero和Arcilla的方法所获得的结果相同的结果[Rivera,F.J.,Arcilla,A.S.,1995。海岸。 。 25,137-152。]到三个维度。

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