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Simplified formulae for designing coastal forest against tsunami run-up: one-dimensional approach

机译:设计沿海森林的简化公式,抵御海啸升降:一维方法

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摘要

In the present study, laboratory experiments were conducted to validate the applicability of a numerical model based on one-dimensional nonlinear long-wave equations. The model includes drag and inertia resistance of trees to tsunami flow and porosity between trees and a simplified forest in a wave channel. It was confirmed that the water surface elevation and flow velocity by the numerical simulations agree well with the experimental results for various forest conditions of width and tree density. Further, the numerical model was applied to prototype conditions of a coastal forest of Pandanus odoratissimus to investigate the effects of forest conditions (width and tree density) and incident tsunami conditions (period and height) on run-up height and potential tsunami force. The modeling results were represented in curve-fit equations with the aim of providing simplified formulae for designing coastal forest against tsunamis. The run-up height and potential tsunami forces calculated by the curve-fit formulae and the numerical model agreed within +/- 10% error.
机译:在本研究中,进行实验室实验以验证基于一维非线性长波方程的数值模型的适用性。该模型包括树木的抵抗和惯性阻力到海啸流动和树木之间的孔隙率和波沟道中的简化森林。证实,使用数值模拟的水表面升高和流速与各种森林宽度和树密度的实验结果吻合良好。此外,将数值模型应用于平原岛屿沿海森林的原型条件,以研究森林条件(宽度和树密度)和入射的海啸条件(周期和高度)对升高高度和潜在海啸力的影响。建模结果以曲线拟合方程表示,目的是为设计沿海林设计沿海林的简化公式。由曲线拟合公式计算的延伸高度和潜在的海啸力量和数值模型在+/- 10%误差内同意。

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