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Numerical modelling of flow in Little Pigeon Bay due to the 2016 Kaikoura tsunami

机译:2016年凯库拉海啸对小鸽子湾水流的数值模拟

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The magnitude 7.8 Kaikoura earthquake on the north-eastern coast of South Island, New Zealand induced a tsunami, which affected many north-facing bays in Banks Peninsula. The V-shaped Little Pigeon Bay experienced pronounced inundation compared to adjacent bays, causing heavy damage to a cottage at the head of the bay. In order to investigate the characteristics of the tsunami flow in the bay, a numerical model based on nonlinear shallow water theory was established, using tidal levels from the neighbouring Sumner sea level gauge. Three incident wave angles were tested, ranging from due north to 30 east of north. The simulated maximum run-up heights were validated with surveyed results. For all the wave directions, a resonance with a period of 6.3 min was found from 50 to 100 min in the simulation. Based on the physical dimensions of Little Pigeon Bay, idealised models were set-up to analyse the influence of V-shaped embayment on maximum water level, maximum velocity and maximum momentum flux. Bays with sand bars of different crest heights were also investigated. A sand bar with a relatively low crest height (d(w)/d = 0.5) did not significantly reduce the maximum velocity and the maximum momentum flux.
机译:新西兰南岛东北海岸的7.8级凯库拉地震引发海啸,影响了班克斯半岛的许多朝北海湾。与相邻海湾相比,V形小鸽子湾遭受了明显的淹没,对海湾顶部的小屋造成了严重破坏。为了研究海湾中海啸的流动特征,利用邻近的萨姆纳海平面仪的潮汐水位,建立了基于非线性浅水理论的数值模型。测试了三个入射波角,范围从正北到北以东30。模拟的最大起步高度已通过调查结果进行了验证。对于所有的波方向,在仿真中发现从50到100分钟的共振周期为6.3分钟。根据小鸽子湾的物理尺寸,建立了理想的模型来分析V形路堤对最大水位,最大速度和最大动量通量的影响。还研究了具有不同波峰高度的沙洲的海湾。具有相对较低的波峰高度(d(w)/ d> = 0.5)的沙洲并没有显着降低最大速度和最大动量通量。

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