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NATURE-BASED FLOOD PROTECTION: THE EFFICIENCY OF VEGETATED FORESHORES IN REDUCING WAVE RUN-UP

机译:基于自然的防洪:植被前沿的效率降低波浪

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It is generally recognized that vegetation fields can dissipate wave energy, authorizing the statements that vegetated foreshores can reduce the wave loads on coastal dikes. This paper actually quantifies the efficiency of vegetated foreshores in reducing the wave run-up on the outer slope of coastal dikes. The spectral wave model SWAN, which is used to compute the wave transformation over vegetated foreshores, has been validated using recent measurements of wave propagation over several salt marshes in the Netherlands under severe storm conditions. This article shows that in case that vegetated foreshores are present along coastal dikes, the wave run-up height on the outer slope of the dike is substantially reduced during storm conditions with large water depths and high waves. Vegetated foreshores are more effective in reducing wave loads on the dike than bare foreshores with the same geometry, even when vegetation in their fragile winter state is compared with a bottom on which ripples have been formed. Because the required crest height of a dike is strongly related to the wave run-up height, a reduction in wave run-up height allows for lower crests and more slender dike bodies. We conclude that the construction of vegetated foreshores can be considered as a sound alternative for traditional dike reinforcement methods.
机译:普遍认为,植被场可以散发波能量,授权植被的前沿可以减少沿海堤坝上的波浪负荷的陈述。本文实际上量化了植被的前沿减少了沿海堤坝外坡面的波浪的效率。用于计算植被前山脉的波动波形的光谱波模型天鹅已经使用最近在严重风暴条件下荷兰的几种盐沼的波传播测量验证了验证的波动。本文展示,如果沿着沿海堤坝存在植被的前沿,堤坝外坡上的波浪升高在风暴条件下大幅减少,具有大的水深和高波浪。即使将悬崖冬季状态的植被与已经形成涟漪的底部进行比较,植被的前沿在减少堤防上的波浪载荷也比裸骑士的普通留在堤坝上更有效。因为堤防所需的峰值高度与波浪升高的高度强烈相关,所以波浪升高的高度的降低允许下部波峰和更多细长的堤防体。我们得出结论,植被的前士山的建设可以被视为传统堤防强化方法的替代品。

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