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Effect of channel connection on flow and salinity distribution of Danshuei River estuary

机译:河道连接对淡水河口流量和盐分分布的影响

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Numerical models are often used to evaluate the potential impact of human alteration of natural water bodies and to help the design the alternation to mitigate its impacts. A vertical (laterally integrated) two-dimensional hydrodynamic model was expanded to include the capability of simulating river loops as well as tributaries. The model was performed and applied to the Danshuei River estuarine system in northern Taiwan which consists of three major tributaries: the Tahan Stream, Hsintien Stream, Keelung River, and one river loop under the Chung-Hsin Bridge. The expanded model was reverified with observational field data of 2000. The verified model was then used to hindcast the river hydrodynamic conditions with a loop connection between the Danshuei River and Keelung River, which existed prior to 1965. It was found that the configuration of river loop connection has significant impacts on the residual transport along the connecting channel and the salinities in the connected river branches. The results show that the model may provide an ideal tool for management decision.
机译:数值模型通常用于评估人类自然水体变更的潜在影响,并帮助设计变更以减轻其影响。扩展了一个垂直(横向整合)的二维水动力模型,以包括模拟河流环流和支流的能力。该模型已执行并应用于台湾北部的淡水河口系统,该系统由三个主要支流组成:塔汉溪,新田溪,基隆河和中兴桥下的一条河环路。扩展模型用2000年的观测数据进行了验证。经过验证的模型被用来通过1965年之前存在的淡水河和基隆河之间的环流连接来逆流河水动力学条件。回路连接对沿连接通道的残留运移和相连河流支流中的盐分有重大影响。结果表明,该模型可以为管理决策提供理想的工具。

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