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首页> 外文期刊>Applied Sciences >Tide-Surge-Wave Interaction in the Taiwan Strait during Typhoons Soudelor (2015) and Dujuan (2015)
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Tide-Surge-Wave Interaction in the Taiwan Strait during Typhoons Soudelor (2015) and Dujuan (2015)

机译:Typhoons Soudelor(2015)和Dujuan(2015年)的台湾海峡浪潮互动

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摘要

Typhoons Soudelor (2015) and Dujuan (2015) were two of the strongest storms to affect the Taiwan Strait in 2015. This study investigated the response of the waters on the western bank of the Taiwan Strait to the passage of Soudelor and Dujuan. This included an investigation of the resonant coupling between the tide and storm surge, typhoon wave variation caused by the storm tide, and wave-induced water level rise. Analyses conducted using numerical model simulations and observations from tidal stations and buoys, obtained during the passage of both Soudelor and Dujuan, revealed that resonant coupling between the astronomical tide and storm surge in the Taiwan Strait was prominent, which resulted in tidal period oscillation on the storm surge and reduced tidal range. The tide wave arrived earlier than the predicted astronomical tide because of the existence of the storm surge, which was attributable to acceleration of the tidal wave caused by the water level rise. Wave height observations showed that the storm tide predominantly affected the waves, which resulted in wave heights that oscillated within the tidal period. Numerical experiments indicated that both the current and the water level affected wave height. Waves were affected mainly by the current in the middle of the Taiwan Strait, but mostly by water level when the water level was comparable with water depth. Wave setup simulations revealed that wave setup also oscillated within the tidal period, and that local bathymetry was the most important influencing factor of wave setup distribution.
机译:Typhoons Soudelor(2015)和Dujuan(2015年)是影响2015年海峡两大的暴风雨。本研究调查了水域对台湾海岸西岸的回应,苏德莱尔和杜娟的通过。这包括对潮汐和风暴浪涌之间的共振耦合的调查,由雨潮引起的台风波变异,以及波浪诱导的水位上升。使用数值模拟和来自潮汐站和浮标的观测进行的分析,在苏达尔和杜娟的通过过程中获得的,揭示了台湾海峡的天文潮和风暴浪涌之间的共振耦合,这导致了潮汐周期振荡风暴浪涌和减少潮汐范围。由于风暴浪涌的存在,潮汐波早于预测的天文潮,这是由于归因于水位升高引起的潮汐波的加速。波浪高度观察表明,暴雨潮主要影响波浪,这导致波长在潮汐期内振荡。数值实验表明,电流和水位影响波高。波浪主要受到台湾中间的目前的影响,但是当水位与水深相当的水位而受到水位。波设置模拟显示波形设置在潮汐期内也振荡,本地沐浴术是波设置分布的最重要影响因素。

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