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Tsunami mitigation by coastal vegetation considering the effect of tree breaking

机译:考虑树木砍伐影响的沿海植被对海啸的缓解

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摘要

Damage to vegetation by tsunami moment and reduction of potential tsunami force are discussed based on a numerical simulation. A numerical model based on two-dimensional nonlinear long-wave equations that include drag forces and turbulence-induced shear force due to the presence of vegetation was developed to estimate tree breaking. The numerical model was then applied to a coastal forest where two dominant tropical vegetation species, Pan-danus odoratissimus and Casuarina equisetifolia, were considered. The threshold water depth for tree breaking increased with increasing forest width, and the analysis was consistent with the field investigation results that the critical tsunami water depth for breaking is around 80% of the tree height for P. odoratissimus. C. equisetifolia is stronger than P. odoratissimus against tsunami action, but P. odoratissimus can reduce a greater tsunami force than C. equisetifolia due to its complex of aerial root structures. Even if breakage occurs, P. odoratissimus still has high potential to reduce the tsunami force due to its dense aerial root structures. Previous numerical models that do not include the breaking phenomena may overestimate the vegetation effect for reducing tsunami force. The combination of P. odoratissimus and C. equisetifolia is recommended as a vegetation bioshield to protect coastal areas from tsunami hazards.
机译:基于数值模拟,讨论了海啸时刻对植被的破坏和海啸潜在力的减小。建立了一个基于二维非线性长波方程的数值模型,该方程包含了由于植被的存在而产生的阻力和湍流引起的剪切力,以估算树木的破裂。然后将数值模型应用于沿海森林,其中考虑了两种主要的热带植被物种:香Pan(Pan-danus odoratissimus)和木麻黄(Casuarina equisetifolia)。破林的阈值水深随森林宽度的增加而增加,并且与实地调查结果一致,即破海的临界海啸水深大约为香椿树高的80%。 C. equisetifolia的抗海啸作用要比P. odoratissimus强,但由于其气生根结构复杂,P。odoratissimus可以比C. equisetifolia降低更大的海啸力。即使发生破损,由于其浓密的气生根结构,P。odoratissimus仍然具有降低海啸压力的高潜力。以前的不包含破坏现象的数值模型可能会高估植被效应以减少海啸力量。推荐将香樟假单胞菌和马齿C假单胞菌的组合用作植被生物防护层,以保护沿海地区免受海啸危害。

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