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Tidal intrusion within a mega delta: an unstructured grid modelling approach

机译:巨型三角洲内的潮汐侵入:非结构化网格建模方法

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摘要

The finite volume community ocean model (FVCOM) has been applied to the Ganges-Brahmaputra-Meghna (GBM) delta in the northern part of the Bay of Bengal in order to simulate tidal hydrodynamics and freshwater flow in a complex river system. The delta region is data-poor in observations of both bathymetry and water level; making it a challenge for accurate hydrodynamic models be configured for and validated in this area. This is the first 3D baroclinic model covering the whole GBM delta from deep water beyond the shelf break to 250 km inland, the limit of tidal penetration.ududThis paper examines what controls tidal penetration from the open coast into an intricate system of river channels. A modelling approach is used to improve understanding of the hydrodynamics of the GBM delta system. Tidal penetration is controlled by a combination of bathymetry, channel geometry, bottom friction, and river flow. The simulated tides must be validated before this delta model is used further to investigate baroclinic processes, river salinity and future change in this area. The performance of FVCOM tidal model configuration is evaluated at a range of sites in order to assess its ability to capture water levels which vary over both a tidal and seasonal cycle.ududFVCOM is seen to capture the leading tidal constituents well at coastal tide gauge stations, with small root-mean-squared errors of 10 cm on average. Inland, the model compares favourably with twice daily observed water levels at thirteen stations where it is able to capture both tidal and annual timescales in the estuarine system. When the river discharge is particularly strong, the tidal range can be reduced as the tide and river are in direct competition.ududThe bathymetry is found to be the most influential control on water levels within the delta, though tidal penetration can be significantly affected by the model's bottom roughness, and the inclusion of large river discharge. We discuss the generic problem of implementing a model in a data-poor region and the challenge of validating a hydrodynamic model from the open coast to narrow river channels.
机译:有限体积群落海洋模型(FVCOM)已应用于孟加拉湾北部恒河-布拉马普特拉-梅格纳(GBM)三角洲,以模拟复杂河流系统中的潮汐水动力和淡水流量。在测深和水位观察中,三角洲地区的数据贫乏;这对于在此区域配置和验证准确的水动力模型是一个挑战。这是第一个涵盖整个GBM三角洲的3D斜压模型,从深水突破了陆架突破点到内陆250 km,这是潮汐渗透的极限。渠道。使用建模方法可以增进对GBM三角洲系统水动力的理解。潮汐渗透是由测深法,河道几何形状,底部摩擦和河流流量共同控制的。必须先验证模拟潮汐,然后才能进一步使用该三角洲模型调查该地区的斜压过程,河流盐度和未来变化。 FVCOM潮汐模型配置的性能在一系列地点进行了评估,以评估其捕获潮汐和季节性周期变化的水位的能力。轨距站,平均均方根误差小10厘米。在内陆地区,该模型与每天在十三个站点观测到的两次水位相比具有优势,它可以捕获河口系统中的潮汐和年度时间尺度。当河流流量特别大时,由于潮汐和河流处于直接竞争状态,潮汐范围可能会减小。 ud ud尽管对潮汐的影响可能很大,但测深法是控制三角洲内水位的最有影响力的控制方法。受模型底部粗糙度和大河流量的影响。我们讨论了在数据贫乏地区实施模型的一般性问题,以及验证从沿海地区到狭窄河道的水动力模型所面临的挑战。

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