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A morpho-climatic instantaneous unit hydrograph model for urban catchments based on the kinematic wave approximation

机译:基于运动波逼近的城市流域形态-气候瞬时单位水文模型

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摘要

Stormwater models are valuable tools in urban planning as well as stormwater system design and management. Although the hydraulic simulation of pipes and channels in these models is often quite sophisticated, the hydrologic simulation of the flow contributing to the hydraulic elements is frequently greatly simplified. Hydrologic simulation of urban catchments is made particularly complex due to the presence of features such as streets, small pipes, and channels. In this study, we develop a new model called the U-McIUH (Urban Morpho-climatic Instantaneous Unit Hydrograph), which defines the IUH as the probability density function of the travel time from a random location in the urban terrain to the outlet. Flow paths are extracted from a specially processed digital elevation model that incorporates hillslopes, streets, pipes, and channels, and travel times are computed in each cell using the average wave celerity from kinematic wave theory. These expressions depend on the upstream contribution of flow and the excess rainfall intensity, so they incorporate the so-called climatic dependence of the IUH, which is the dependence of the unit hydrograph on the rainfall intensity. Rainfall pulses of different intensities are convoluted with their respective IUH and superimposed to generate the response to a given storm event. The application of the model to a real catchment provides good reproduction of observed hydrographs, suggesting that the U-McIUH is able to capture some significant hydrologic properties of the catchment. The model is studied by analyzing the effects of (1) the upstream contribution of flow on the travel time formulation, (2) the variation of flow velocities within the urban catchment, (3) the non-linear dependence of the IUH on the rainfall intensity (i.e. the climatic dependence), and (4) the spatial distribution of imperviousness. Overall, these results suggest that the presence of artificial elements in urban watersheds has a significant role in determining the travel times and thus the hydrologic response of the watershed.
机译:雨水模型是城市规划以及雨水系统设计和管理中的宝贵工具。尽管在这些模型中对管道和通道的水力模拟通常相当复杂,但通常大大简化了对液压元件产生作用的水流的水文模拟。由于街道,小管道和河道等功能的存在,对城市集水区的水文模拟变得特别复杂。在这项研究中,我们开发了一种称为U-McIUH(城市形态气候瞬时单位水位图)的新模型,该模型将IUH定义为从城市地形中的随机位置到出口的旅行时间的概率密度函数。从经过特殊处理的数字高程模型(包括山坡,街道,管道和通道)提取流路,并使用运动波理论中的平均波速来计算每个单元中的行进时间。这些表达式取决于流量的上游贡献和过多的降雨强度,因此它们包含了IUH的所谓气候依赖性,即单位水位图对降雨强度的依赖性。不同强度的降雨脉冲与其各自的IUH进行卷积,并叠加以生成对给定风暴事件的响应。该模型在实际流域的应用提供了观测水文的良好再现,这表明U-McIUH能够捕获流域的一些重要水文特性。通过分析以下因素对模型进行了研究:(1)上游对旅行时间公式的贡献;(2)城市集水区内流速的变化;(3)IUH对降雨的非线性依赖性强度(即气候依赖性),以及(4)防渗性的空间分布。总体而言,这些结果表明,城市流域中人造元素的存在在决定流域的旅行时间和水文响应方面具有重要作用。

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