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Downstream hydraulic geometry of alluvial rivers

机译:冲积河流的下游水力几何

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This article presents a three-level approach to the analysis of downstream hydraulic geometry. First, empirical concepts based on field observations of 'poised' conditions in irrigation canals are examined. Second, theoretical developments have been made possible by combining basic relationships for the description of flow and sediment transport in alluvial rivers. Third, a relatively new concept of equivalent channel widths is presented. The assumption of equilibrium may describe a perpetual state of change and adjustments. The new concepts define the trade-offs between some hydraulic geometry parameters such as width and slope. The adjustment of river widths and slope typically follows a decreasing exponential function and recent developments indicate how the adjustment time scale can be quantified. Some examples are also presented to illustrate the new concepts presented and the realm of complex river systems.
机译:本文提出了一种用于分析下游水力几何形状的三级方法。首先,研究了基于实地观察灌溉渠“平衡”状况的经验概念。第二,通过结合基本关系来描述冲积河流中的水和泥沙输送,理论发展成为可能。第三,提出了一种相对较新的等效通道宽度的概念。平衡的假设可以描述变化和调整的永久状态。新概念定义了某些水力几何参数(例如宽度和坡度)之间的权衡。河流宽度和坡度的调整通常遵循递减的指数函数,最近的发展表明如何可以量化调整时间尺度。还提供了一些示例来说明所提出的新概念以及复杂河流系统的领域。

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