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Tsunami damping by mangrove forest: A laboratory study using parameterized trees

机译:红树林抑制海啸:使用参数化树木的实验室研究

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摘要

Tsunami attenuation by coastal vegetation was examined under laboratory conditions for mature mangroves Rhizophora sp. The developed novel tree parameterization concept, accounting for both bio-mechanical and structural tree properties, allowed to substitute the complex tree structure by a simplified tree model of identical hydraulic resistance. The most representative parameterized mangrove model was selected among the tested models with different frontal area and root density, based on hydraulic test results. The selected parameterized tree models were arranged in a forest model of different width and further tested systematically under varying incident tsunami conditions (solitary waves and tsunami bores). The damping performance of the forest models under these two flow regimes was compared in terms of wave height and force envelopes, wave transmission coefficient as well as drag and inertia coefficients. Unlike the previous studies, the results indicate a significant contribution of the foreshore topography to solitary wave energy reduction through wave breaking in comparison to that attributed to the forest itself. A similar rate of tsunami transmission (ca. 20 %) was achieved for both flow conditions (solitary waves and tsunami bores) and the widest forest (75m in prototype) investigated. Drag coefficient CD attributed to the solitary waves tends to be constant (CD = 1.5) over the investigated range of the Reynolds number.
机译:在实验室条件下,对成熟红树林Rhizophora sp。的沿海植被造成的海啸衰减进行了检查。发展起来的新颖的树木参数化概念,考虑了生物力学和结构树木的特性,可以用具有相同水力阻力的简化树木模型代替复杂的树木结构。根据水力试验结果,从具有不同额叶面积和根系密度的试验模型中选择最具代表性的参数化红树林模型。将选定的参数化树模型布置在不同宽度的森林模型中,并在变化的海啸条件下(孤波和海啸钻孔)进行系统地进一步测试。比较了这两种流动状态下森林模型的阻尼性能,包括波浪高度和力包络,波浪传递系数以及阻力和惯性系数。与以前的研究不同,研究结果表明,与森林本身相比,滨海地形对通过波浪破碎减少孤立波浪能量的贡献很大。对于流动条件(孤波和海啸钻孔)和最宽的森林(原型中为75m),海啸传播率均达到了约20%(约20%)。在孤立的雷诺数研究范围内,归因于孤立波的阻力系数CD趋于恒定(CD = 1.5)。

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