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Tidal hydrodynamics and flushing characteristics of Gulf of Khambhat, west coast of India – A numerical approach

机译:印度西海岸Khambhat海湾的潮气动力学与冲洗特征 - 一种数值方法

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Tidal hydrodynamics of the Gulf of Khambhat (GoK) were studied with the observed and simulated datasets. The flushing time of the Gulf was estimated using the 2D-model calibrated and validated with the tide and current speed observations. Model simulations were carried out with the influence of tide, wind, and tide and wind combinedly. Wind-driven flushing was found to be the least with the flushing time magnitude of more than 25 days. The flushing time was found to be much lower for the surrounding sea irrespective of the seasonal and tidal variations. The model-derived tidal circulation revealed the seasonal variability and the dominance of flood tide over ebb in GoK. Maximum current speed was during spring-flood conditions in the southwest monsoon, whereas minimum current speed was during the neap-ebb condition of pre-monsoon. High-frequency radar data, from the southern GoK ascertain the increase in current speed from south to north. The Simpson–Hunter parameter, calculated in several locations of the Gulf established the enhancing mixing capacity of GoK from south to north. During low current speed conditions, the Gulf experiences the formation of a barrier at the southern region which interrupts flushing between the Gulf and the north-eastern Arabian Sea during northeast monsoon and pre-monsoon season. $f{Highlights}$ $ullet$ Tidal hydrodynamics of Gulf of Khambhat studied with the observed and simulated datasets $ullet$ Amplification in the mixing capacity of the Gulf is observed towards the north $ullet$ Least flushing was observed during pre-monsoonal months.
机译:用观察和模拟数据集研究了Khambhat(Gok)湾的潮气动力学。使用校准的2D模型估计海湾的冲洗时间,并用潮汐和电流观测验证。模型模拟是通过潮汐,风和潮汐和潮流的影响而进行的。发现风力驱动的冲洗是潮冲洗时间幅度超过25天的冲洗。由于季节性和潮汐变化,周围海洋的冲洗时间被发现对于周围海域来说要低得多。模型衍生的潮汐流动揭示了季节性变异性和洪水潮汐在rok上的洪水潮汐。最大电流速度是西南季风的春季洪水条件,而最小电流速度是在季风前的NeAp-EBB条件下。来自南方的高频雷达数据,从南部到北方的当前速度的增加。辛普森 - 猎人参数,在海湾的几个地点计算,建立了从南北涌货的增强的混合能力。在低电流速度条件下,海湾经历了南部地区的屏障的形成,在东北季风和季风季节中断了海湾和东北阿拉伯海之间的冲洗。 $ bf {亮点} $ bullet $ $ bullet $ xhambhat的潮流体动力学与观察和模拟的数据集$ bullet $ bullet $扩增在北$ bullet $ bullet $ bullet $ bullet $最少冲洗季前翁月份。

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