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A COMBINED, SURFACE-SUBSURFACE, APPROACH TO BEDLOAD TRANSPORT CALCULATIONS IN GRAVEL BED STREAMS

机译:浅层床床中床面荷载联合计算的组合方法

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摘要

The ranges of grain sizes as well as the quantity of «ach size present on a stream bed surface are among the important factors affecting the transport of sediments. Most of the bedload transport models are based on a single grain size parameter that represents either the surface (pavement) or the subsurface (sub-pavement) bed material. Recently, a two-parameter approach, one for the surface and the other for the subsurface sediments, for estimating bedload transport in gravel bed streams with unimodal sediments was proposed. This approach is pursued further here by considering fractional grain size analysis and similarity collapse techniques. The laboratory data obtained by Proffit (1980) is used to examine the validity of this new methodology. The developed combined, surface-subsurface, approach implicitly accounts for the variation of the make up of the surface bed material over a wide range of Shields stresses and reflects the resulting changes in the contributions made by the surface and subsurface layers to the bedload transport. It also reflects the increase in the mobility conditions resulting from the increase in the Shields stresses. The present approach describes bedload transport in gravel bed streams as a continuum gradually adjusting between two extremes, a fully developed pavement and selective particle entrainment on the lower end near threshold conditions and absence of vertical grain size stratification and equal mobility for very high Shields stresses and massive bedload transport.
机译:流床表面上的晶粒尺寸范围和每个尺寸的数量是影响沉积物传输的重要因素之一。大多数床载运输模型基于单个粒度参数,该参数代表表面(路面)或地下(子路面)床层材料。最近,有人提出了一种两参数方法,一种用于地表,另一种用于地下沉积物,用于估计含单峰沉积物的砾石床流中的床荷运输。通过考虑分数粒度分析和相似性崩溃技术,可以在此进一步追求该方法。 Proffit(1980)获得的实验室数据用于检验这种新方法的有效性。已开发的表面-地下组合方法隐含地解释了在广泛的Shields应力范围内表面床层材料组成的变化,并反映了表层和地下层对床层负荷输送的贡献的最终变化。它还反映了由于Shields应力的增加而导致的流动性条件的增加。本方法描述了砾石床流中的床荷运输,是在两个极端之间逐渐调整的连续体,在接近阈值条件的下端充分发展的路面和选择性颗粒夹带,并且没有垂直晶粒尺寸分层以及对于非常高的Shields应力和均等迁移率大量的载重运输。

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