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Numerical analysis on the effect of wave boundary condition in storm wave and surge modeling for a tropical cyclonic condition

机译:波浪边界条件在热带气旋条件下波浪边界条件影响的数值分析

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摘要

In a swell dominated region like the Northern Indian Ocean basin, the effect of pre-existing waves will play a significant role in the non-linear wave-wave interactions during cyclonic conditions, where the sea is dominated with high-frequency waves. Hence, to include such complex phenomenon into the numerical model, the present study aims at forcing a pre-run two-dimensional wave spectral output from an unstructured global coarser domain as a wave boundary condition to a finer regional domain. The storm wave and surge simulations were performed for the duration of cyclone Phailin (2013). A coupled (ADCIRC + SWAN) model was used for both, generating the spectrum, as well as the estimation of surge and wave attributes. Additionally, both storm wave and surge were simulated without considering the nested wave boundary condition, followed by the comparison and analyses of the modeled results with the field data. The investigation showed that the inclusion of wave boundary condition in the model resulted in closer agreement of the simulated wave parameters with the observed field data. The residual surge results also correlated well with the in-situ measurements, while the spatial representation of maximum water levels essentially revealed the spread of surge and its associated inundation.
机译:在像北方印度洋盆地这样的膨胀地区,预先存在的波的效果将在旋风条件下的非线性波浪相互作用中发挥重要作用,海洋与高频波导地位。因此,为了将这种复杂的现象包括到数值模型中,本研究旨在强制从非结构化的全局较粗构域从非结构化的全局较粗构域输出的预先运行的二维波谱输出到更精细的区域域。暴风波和浪涌模拟是在飓风普利宁(2013)的持续时间内进行的。耦合(ADCIRC + SWAN)模型用于两者,产生频谱,以及浪涌和波浪属性的估计。此外,在不考虑嵌套波边界条件的情况下模拟风暴波和浪涌,然后使用现场数据进行比较和分析建模结果。该研究表明,在模型中包含波边界条件导致模拟波参数与观察到的现场数据更仔细。残留浪涌结果也与原位测量相比很好地相关,而最大水平的空间表示基本上揭示了浪涌的传播及其相关的泛滥。

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