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首页> 外文期刊>Journal of Engineering and Technological Sciences >Analysis of Surface Wave Attenuation in Mangrove Forests
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Analysis of Surface Wave Attenuation in Mangrove Forests

机译:红树林的表面波衰减分析

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This paper presents an analytical study on surface wave attenuation in mangrove forest using analytical model developed by Massel et.al. (1999). The energy dissipation in the frequency domain is determined by treating the mangrove forest as a random media with certain characteristics using the geometry of mangrove trunks and their locations. Initial nonlinear governing equations are linearized using the concept of minimalization in the stochastic sense and interactions between mangrove trunks and roots have been introduced through the modification of the drag coefficients. To see the effectiveness of the mangrove forest in attenuating wave energy the analytical model was applied to two types of mangrove forest i.e. Rhizophora and Ceriops forests. The resulting rate of wave energy attenuation depends strongly on the density of the mangrove forest, and on diameter of mangrove roots and trunks. More effective wave energy attenuation is shown by Rhizophora.
机译:本文利用Massel等人开发的解析模型,对红树林的表面波衰减进行了分析研究。 (1999)。通过将红树林作为具有某些特征的随机介质,使用红树林树干的几何形状及其位置来确定频域中的能量耗散。初始非线性控制方程使用随机意义上的最小化概念进行了线性化,并且通过修改阻力系数引入了红树林树干与根之间的相互作用。为了了解红树林在衰减波能方面的有效性,将分析模型应用于两种类型的红树林,即根茎和角柏木。产生的波能衰减率在很大程度上取决于红树林的密度以及红树林根和树干的直径。 Rhizophora显示了更有效的波能衰减。

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