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首页> 外文期刊>Canadian Journal of Civil Engineering >Mathematical modelling of shallow flows: Closure models drawn from grain-scale mechanics of sediment transport and flow hydrodynamics
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Mathematical modelling of shallow flows: Closure models drawn from grain-scale mechanics of sediment transport and flow hydrodynamics

机译:浅水流的数学模型:从沉积物运移和水流动力学的颗粒尺度力学得出的闭合模型

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摘要

Mathematical modelling of river processes is, nowadays, a key element in river engineering and planning. River modelling tools should rest on conceptual models drawn from mechanics of sediment transport, river mechanics, and river hydrodynamics. The objectives of the present work are (i) to describe conceptual models of sediment transport, deduced from grain-scale mechanics of sediment transport and turbulent flow hydrodynamics, and (ii) to present solutions to specific river morphology problems. The conceptual models described are applicable to the morphologic evolution of rivers subjected to the transport of poorly sorted sediment mixtures at low shear stresses and to geomorphic flows featuring intense sediment transport at high shear stresses. In common, these applications share the fact that sediment transport and flow resistance depend, essentially, on grain-scale phenomena. The idealized flow structures are presented and discussed. Numerical solutions for equilibrium and nonequilibrium sediment transport are presented and compared with laboratory and field data.
机译:如今,河流过程的数学建模已成为河流工程和规划中的关键要素。河流建模工具应基于从泥沙输送力学,河流力学和河流水动力学中提取的概念模型。本工作的目的是(i)描述从沉积物运移的粒度尺度和湍流流体动力学推导的沉积物运移的概念模型,以及(ii)提出特定河流形态问题的解决方案。所描述的概念模型适用于在低切应力下经受分类不良的沉积物混合物的运输的河流的形态演化,以及在高切应力下具有强烈沉积物运输的地貌流动。通常,这些应用共享以下事实:沉积物的传输和流动阻力基本上取决于晶粒度现象。介绍并讨论了理想的流动结构。提出了平衡和非平衡沉积物传输的数值解,并与实验室和现场数据进行了比较。

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