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Wave overtopping at dykes with topped vertical wall - Impacts of oblique wave attack

机译:垂直墙顶高的堤坝上的波浪超顶-倾斜波浪袭击的影响

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摘要

Hydraulic model tests at a scale of 1:10 are carried out in a 40 m x 25 m wave basin with a state-of-the-art 3D wave generator in order to collect wave overtopping data at vertical walls and dykes with topped vertical walls. Wave conditions in the near field of the structures, velocities under waves and the mean overtopping discharge are measured. The experiments have been commissioned by the Lower Saxony Water Management, Coastal Defense and Nature Conservation Agency (NLWKN) with the purpose to deliver essential overtopping data for validation of numerical models. Two main geometries are analyzed – each for two specific wave spectra. Overtopping rates are investigated with respect to the remaining freeboard height Rc and the influence of oblique wave attack β{0°, 10°, 30°, 40°, 50°, 60°}. Results are compared with existing analytical approaches. As expected for this special geometrical coastal protection structure, it is examined that overtopping discharges increase with decreasing remaining freeboard. Intensity of the reduction is more dependent on the wave spectra than on the dyke geometry. Mean wave overtopping rate increases with decreasing relative water depth Hm0/d directly in front of the vertical wall. Furthermore, the mean wave overtopping rates decrease with an increasing angle of wave attack β. The correlation between mean wave overtopping rate and freeboard height is given in four newly adapted design formulas, describing the overtopping performance of the two discussed dyke geometries with topped vertical walls.
机译:在具有最新3D波发生器的40 m x 25 m波浪池中,以1:10的比例进行了水力模型测试,以收集垂直壁和顶部为垂直壁的堤坝的波浪超顶数据。测量结构近场中的波浪情况,波浪下的速度以及平均的超顶放电。该实验已由下萨克森州水管理局,海岸防卫和自然保护局(NLWKN)委托进行,目的是提供必要的重要数据以验证数值模型。分析了两个主要几何形状–每个都有两个特定的波谱。针对剩余的干舷高度Rc和斜波冲击β{0°,10°,30°,40°,50°,60°}的影响,研究了超车率。将结果与现有分析方法进行比较。如对这种特殊的几何沿海防护结构所期望的那样,研究表明,越过顶部的排水量随剩余干舷的减少而增加。减小的强度更多地取决于波谱,而不是堤的几何形状。直接在垂直壁前方,随着相对水深Hm0 / d的减小,平均波超顶率增加。此外,平均波超速率随着波攻角β的增加而降低。在四个新近改编的设计公式中给出了平均波超顶速率与干舷高度​​之间的相关性,描述了两个讨论的堤顶垂直墙几何形状的超顶性能。

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