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首页> 外文期刊>Iranian Journal of Science and Technology, Transactions of Civil Engineering >Effect of Secondary Flow on Hydraulic Geometry in Meandering Rivers
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Effect of Secondary Flow on Hydraulic Geometry in Meandering Rivers

机译:二次流动对蜿蜒河流液压几何的影响

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摘要

Hydraulic geometry is a term to state that a relationship between channel shape and discharge at-a-station or downstream of a reach. Channel shape means cross-sectional geometry (i.e., width, depth), together with hydraulic parameters (i.e., bed slope, mean velocity) for a given water and sediment discharge. In this study, a general concept of hydraulic geometry is initially dealt with; thereafter, continuity, flow resistance, sediment load and secondary flow equations are applied to develop a semi-analytical model for downstream hydraulic relation. The secondary flow appears in the relations by the ratio of radial to longitudinal shear stresses. Further on, Hey and Thorne (J Hydraul Eng ASCE 112(8):671-686, 1986) field data in Britain are used to calibrate the model, and this indicates a reasonable agreement between observed and calculated values with average error between 17.101 and 30.204% which may partially be owing to the assumptions made in the model. In the end, sensitivity analysis is accomplished to identify the parameters to which the model is most sensitive.
机译:液压几何形状是一个术语,以说明沟道形状与距离的频道形状和放电之间的关系。通道形状意味着给定水和沉积物排放的横截面几何(即,宽度,深度)以及液压参数(即床斜率,平均速度)。在这项研究中,最初涉及液压几何形状的一般概念;此后,应用连续性,流动阻力,沉积物负荷和次要流动方程来开发用于下游液压关系的半分析模型。二次流动通过径向与纵向剪切应力的比率出现在关系中。进一步进一步,嘿和托罗恩(J HydraUl Eng Asce 112(8):671-686,1986)英国的现场数据用于校准模型,这表明观察和计算值之间的合理协议,平均误差在17.101之间平均误差30.204%可能部分是由于模型中的假设。最后,完成了灵敏度分析以识别模型最敏感的参数。

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