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首页> 外文期刊>Proceedings of the International Conference on Coastal Engineering >NUMERICAL MODELING OF THE INTERACTIONS BETWEEN NONLINEAR WAVES AND ARBITRARILY FLEXIBLE VEGETATION
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NUMERICAL MODELING OF THE INTERACTIONS BETWEEN NONLINEAR WAVES AND ARBITRARILY FLEXIBLE VEGETATION

机译:非线性波浪与任意柔性植被相互作用的数值模拟

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Coastal wetlands are among the natural features with the capability to dissipate wave energy and reduce storm damage. Inadequate representation of wave and vegetation characteristics in numerical models may reduce their capability in predicting wave processes over wetlands. Previous numerical wave models have typically applied simplifications on vegetation behavior. For instance, vegetation stems were usually assumed to be rigid or semi-flexible and thus extreme stem deflections could not be captured. In this study, a time-domain nonlinear numerical model based on extended Boussinesq formulation is developed and coupled with a numerical model for vegetation blade dynamics that allows for arbitrary flexibility. Comparison with analytical and laboratory experiments show that the coupled model can adequately predict flow as well as vegetation blade dynamics without the need for any parameter tuning. The model is then used to obtain wave-induced forces on a stem and vegetation blade orientation. Model results indicate that the variation of the vegetative drag coefficient with wave frequency is non-monotonic.
机译:沿海湿地是自然特征之一,具有消散波浪能和减少风暴破坏的能力。数值模型中波浪和植被特征的不足表示可能会降低其预测湿地波浪过程的能力。先前的数值波浪模型通常已对植被行为进行了简化。例如,通常假定植物茎是刚性的或半柔性的,因此无法捕获极端的茎挠度。在这项研究中,开发了基于扩展的Boussinesq公式的时域非线性数值模型,并与植被叶片动力学数值模型相结合,该模型允许任意灵活性。与分析和实验室实验的比较表明,该耦合模型可以充分预测流量以及植被叶片动力学,而无需任何参数调整。然后,该模型用于获得在茎和植被叶片方向上的波浪感应力。模型结果表明,植物阻力系数随波浪频率的变化是非单调的。

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