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Flood routing with real-time stage correction method for flash flood forecasting in the Tanshui River, Taiwan

机译:台湾潭水河山洪预报的实时阶段修正方法

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Based on the dynamic wave theory of unsteady flow in open channels, a four-point implicit finite-difference method is employed to develop a flash flood routing model for the Tanshui River in Taiwan. The real-time observed river stages are specified as the internal boundary conditions for the routing model in order to adjust the computed real-time flow. The number of discritized equations for the conservations of mass and momentum, plus the internal boundary conditions, is more than that of flow variables to be solved for. The least-squares method is used to solve the over-determined problem. The model is calibrated and verified with the field records of several typhoon flood events. There is a reasonable good agreement between measured and computed river stages. Four typhoon flood events are simulated to confirm the accuracy of the forecasting method. The results reveal that the present model can provide accurate river stage for flood forecasting in the Tanshui River. (C) 2003 Elsevier B.V. All rights reserved. [References: 25]
机译:基于明渠非定常流的动力波理论,采用四点隐式有限差分法建立了台湾淡水河的洪水泛洪路径模型。为了调整计算的实时流量,实时观测的河段被指定为路由模型的内部边界条件。关于质量和动量守恒的离散方程的数量,加上内部边界条件,比要解决的流量变量要多。最小二乘法用于解决超定问题。该模型已通过几次台风洪水事件的现场记录进行了校准和验证。在实测河段和计算河段之间有一个合理的良好协议。模拟了四个台风洪水事件,以确认预测方法的准确性。结果表明,该模型可以为淡水河的洪水预报提供准确的河段。 (C)2003 Elsevier B.V.保留所有权利。 [参考:25]

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