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Assessing Impacts of Sea Level Rise and Sea Dike Construction on Salinity Regime in Can Gio Bay, South Vietnam

机译:评估海平面上升与海堤建设在南越南越南CAN GIO湾盐度制度的影响

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摘要

To protect Ho Chi Minh City (HCMC) from submergence due to the ongoing rapid sea level rise (SLR), the Vietnamese government have proposed the construction of a sea dike in Can Gio Bay. Can Gio Bay will be closed to regulate the storage and to control water levels in the drainage and sewer systems of HCMC. This could significantly impact the salinity distribution in the Bay and affect its mangrove forest. In this study, a set of scenarios will be analyzed using two-dimensional hydrodynamic and convective-dispersive models to assess the effects of SLR and the construction of a sea dike on salinity distribution in the Bay. The results reveal that the salinity in most areas of the Bay tended to increase positively with the SLR. The sea dikes significantly reduced seawater intrusion into half of the upstream area of the Bay. Considering the influence of SLR and the construction of a sea dike, the sea dike could result in the reduction of salinity. Furthermore, if the sea dike was operated for a long time, half of the Bay area would become freshwater, which would lead to adverse effects on the mangrove forest.
机译:由于持续快速的海平面上升(SLR),越南政府提出了在CAN GIO湾建立了海堤的建设,保护胡志明市(HCMC)免受淹没。 Gio Bay可以关闭,以调节储存并控制HCMC排水和下水道系统中的水位。这可能会显着影响海湾中的盐度分布,并影响其红树林。在这项研究中,将使用二维流体动力学和对流分散模型分析一组情景,以评估SLR的影响和海堤对海湾盐度分布的影响。结果表明,海湾大部分地区的盐度往往与单反相比积极地增加。海堤将海水侵入大幅降低到海湾上游区域的一半。考虑到SLR的影响和海堤的建设,海堤可能导致盐度的减少。此外,如果海堤长时间运行,则海湾地区的一半将成为淡水,这将导致红树林森林的不利影响。

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