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Modeling of the Attenuation of Hydraulic Bores by Coastal Forests using the SPH Method

机译:沿海林用SPH方法建模沿海林液压钻孔衰减

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The attenuation of large hydraulic bores, such as the ones induced by the breaking of tsunamis, near the shoreline, can result in massive damage to infrastructure and significant loss of lives. Man-made structures such as seawalls and breakwaters are beneficial for restricting the inland propagation of waves, but may be costly and ineffective during large tsunami events. Natural structures, such as coastal forests, may provide a reasonable method for the protection of coastal regions, as they are capable of attenuating the bore flow and restricting the movement of debris. This paper will present the results of a numerical model based on the Smoothed Particle Hydrodynamics (SPH) method that was used to simulate the attenuation and propagation of a hydraulic bore on a coastal forest. The SPH method uses a Lagrangian approach which allows for an accurate reproduction of the bore propagation, breaking and splashing as well as alleviating problems that may occur for traditional computational methods. The open source-code software (DualSPHysics), which uses the Graphical Processing Unit for faster computational time, was used to run the simulations. The model was used to determine a relation between the number and density of the vegetation elements (such as trees) and their effect on the bore attenuation and velocity.
机译:大型液压孔的衰减,例如通过海峡附近突破海啸引起的液压诱导的液体可能导致对基础设施的大量损害,并且损失的生命损失。人造结构,如海堤和防波堤是有利于限制海浪的内陆繁殖,但在大海啸事件中可能是昂贵和无效的。自然结构,如沿海林,可以为保护沿海地区提供合理的方法,因为它们能够衰减钻孔流动并限制碎片的运动。本文将介绍基于平滑粒子流体动力学(SPH)方法的数值模型的结果,该方法用于模拟沿海林液压孔的衰减和传播。 SPH方法使用拉格朗日方法,该方法允许精确地再现孔传播,破裂和溅起,以及减轻传统计算方法可能发生的问题。使用图形处理单元更快计算时间的开源代码软件(Dualsphysphysics)用于运行模拟。该模型用于确定植被元素(例如树木)的数量和密度之间的关系及其对孔衰减和速度的影响。

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