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首页> 外文期刊>Estuarine Coastal and Shelf Science >Three dimensional model evaluation of physical alterations of the Caloosahatchee River and Estuary: Impact on salt transport
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Three dimensional model evaluation of physical alterations of the Caloosahatchee River and Estuary: Impact on salt transport

机译:Caloosahatchee河和河口物理变化的三维模型评估:对盐分迁移的影响

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Numerical hydrodynamic modeling provides quantitative understanding of how physical alterations of an estuary may alter the waterbody hydrodynamics and the rate of mixing with the ocean. In this study, a three dimensional hydrodynamic model (CH3D) was used to compare simulated salinities between the existing condition and five historical cases representing varying physical alterations of the Caloosahatchee Estuary involving (1) removal of the headwater structure (S-79); (2) removal of the downstream causeway to Sanibel Island; (3) backfilling an oyster bar near the estuary month; (4) refilling the navigation channel; and (5) the pre-development bathymetric condition. The results suggested that some alterations including the Sanibel Causeway, backfilling the oyster bar and the S-79 structure may have some local effects but did not change estuarine salinity structure significantly. Refilling the navigation channel had a more profound effect, resulting in a dry season salinity reduction of about 5 when compared with the existing condition. The reduced salt transport was more pronounced with the pre development bathymetry because the estuary as a whole was much shallower than today. The significant system-wide increase in salt transport caused by the historic dredging of the navigation channel in the Caloosahatchee Estuary has significant implications in the development of attainable environmental flow targets for protecting the estuarine ecosystem. Published by Elsevier Ltd.
机译:数值流体动力学模型可以定量地了解河口的物理变化如何改变水体的流体动力学以及与海洋的混合速度。在这项研究中,我们使用三维水动力模型(CH3D)比较了现有条件和5个历史案例之间的模拟盐度,这些案例代表了Caloosahatchee河口的各种物理变化,其中包括:(1)去除源水结构(S-79); (2)拆除通往萨尼贝尔岛的下游堤道; (3)在河口月份附近回填牡蛎条; (4)补充导航通道; (5)开发前的测深条件。结果表明,包括Sanibel堤道,回填牡蛎条和S-79结构在内的某些变化可能具有局部影响,但并未显着改变河口盐度结构。补充航道产生了更深远的影响,与现有条件相比,干旱季节的盐度降低了约5倍。盐分运移的减少在开发前的测深法中更为明显,因为整个河口比今天要浅得多。 Caloosahatchee河口的航道的历史性疏caused导致盐分运输在系统范围内的显着增加,这对于制定可实现的保护河口生态系统的环境流量目标具有重大意义。由Elsevier Ltd.发布

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