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Development of a cell-based stream flow routing model

机译:基于单元的流路由模型的开发

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摘要

This study presents the development of a cell-based routing model. The model developed is a two parameter hydrological routing model that uses a coarse resolution stream network to route runoff from each cell in the watershed to the outlet. The watershed is divided into a number of equal cells, which are approximated as cascade of linear reservoirs or tanks. Water is routed from a cell downstream, depending on the flow direction of the cell, using the cascade of tanks. The routing model consists of two phases, first is the overland flow routing, which is followed by the channel flow routing. In this study, the cell-to-cell stream flow routing model is applied to the Brazos River Basin to demonstrate the impact of the cascade of tanks on the flow over a simple linear reservoir method. This watershed was tested with a uniform runoff depth in absence of observed runoff data. A case study on Waller Creek in Austin, Texas with observed runoff depths and stream flow is used to demonstrate the calibration and validation of model parameters.
机译:这项研究提出了基于单元的路由模型的发展。开发的模型是一个两参数水文路径模型,该模型使用粗分辨率流网络将径流从流域中的每个单元传递到出口。分水岭被分为多个相等的像元,这些像元近似为线性蓄水池或水箱的级联。使用级联的水箱,根据电池的流动方向,将水从下游的电池中引出。路由模型包括两个阶段,首先是陆上流路由,其次是河道流路由。在这项研究中,将单元间流动流路由模型应用于布拉索斯河流域,以通过简单的线性储层方法论证储罐级联对流的影响。在没有观测到的径流数据的情况下,以均匀的径流深度测试了该分水岭。以德克萨斯州奥斯丁的沃勒溪为例,观察了径流深度和水流,以证明模型参数的校准和验证。

著录项

  • 作者

    Raina Rajeev;

  • 作者单位
  • 年度 2005
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
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