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On the wave-current interaction during the passage of a tropical cyclone in the Bay of Bengal

机译:孟加拉湾热带气旋通过时的波流相互作用

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The impact of waves on currents and vice-versa is an integral part of the complex coastal dynamics. The wave-current interaction is prominent in the coastal shelf-slope regions, particularly during the passage of a tropical cyclone. In the present study, we describe the importance of wave-current interaction in the northern Bay of Bengal (BoB) using a fully coupled three-dimensional Coupled Ocean-Atmosphere-Wave-Sediment Transport (COAWST) modelling system. The COAWST model is applied to the case of a very severe cyclonic storm Phailin that passed over the BoB basin during 10-15 October 2013. To represent the interaction between waves and currents, we utilized the newly implemented vortex-force method in the coupled model. Numerical experiments with different coupling configuration within the COAWST modelling framework were performed to separately identify the effects of wind, tide, and wave-current interaction process. A comparison of model results with the buoy observations of water elevations, currents, and wave measurements shows a good agreement between model and observed data. Various terms of the momentum balance were calculated from the model simulated and diagnosed parameters. A comparison of the horizontal momentum balance term identifies the wave-breaking induced acceleration as one of the leading terms along the storm affected the east coast of India. Further, an increase in the apparent bed roughness caused by waves found to affect the values and distribution of the bottom shear stress. The pressure gradient term showed significant changes to the pure tidal case. The study highlights that the changes in the momentum balance caused by waves includes contributions from the variations in the water level and currents. The most relevant effect on the coastal hydrodynamics was in the form of a wave-induced setup near the location of landfall of the cyclone.
机译:波浪对海流的影响,反之亦然,是复杂的海岸动力学不可或缺的一部分。在沿海陆架-斜坡区域,特别是在热带气旋通过期间,波流相互作用尤为明显。在本研究中,我们使用完全耦合的三维海-气-波-沉积物耦合(COAWST)建模系统描述了孟加拉北部湾(BoB)中波流相互作用的重要性。 COAWST模型用于2013年10月10日至15日在BoB盆地上空发生的非常严重的旋风风暴Phailin的情况。为了表示波与流之间的相互作用,我们在耦合模型中采用了新实施的涡旋力方法。在COAWST建模框架内进行了具有不同耦合配置的数值实验,以分别识别风,潮汐和波流相互作用过程的影响。将模型结果与水位,水流和波浪测量值的浮标观测结果进行比较,可以看出模型数据与观测数据之间具有很好的一致性。动量平衡的各个项是根据模型的仿真和诊断参数计算得出的。通过比较水平动量平衡项,可以确定波浪引起的加速度是风暴影响印度东海岸的主要项之一。此外,发现波影响底部剪切应力的值和分布,导致表观床层粗糙度增加。压力梯度项对纯潮汐情况显示出显着变化。研究强调,由波浪引起的动量平衡的变化包括水位和水流变化的贡献。对沿海水动力最相关的影响是在气旋登陆位置附近的波浪诱发装置的形式。

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