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Influence of Grain Size on Sediment Transport during Initial Stages of Horizontal Dam Break-Type Flows

机译:水平溃坝型水流初期颗粒尺寸对泥沙输移的影响

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摘要

The influence of grain size on sediment transport during the initial stages of dam break-type flows over horizontal mobile sediment beds was investigated through dimensional analysis and experiments. A new dimensional analysis reconciles the unbalanced dimensions in Bagnold's formulations describing the grain size influence on steady-flow sediment transport and indicates that the sediment transport is inversely proportional to the square root of the grain size, consistent with Bagnold's empirical correlation. Total transport rates were measured for quartz grains ranging from 0.22 to 2.65 mm in diameter. Regression between the dimensionless variables indicated that the mobility number collapses the sediment transport data better than the Shields number and indicated that the total sediment transport is approximately inversely proportional to the square root of the grain size and the velocity to the fourth power. The Meyer-Peter Muller transport model based on the Shields number requires transport coefficients for the finest sand that are significantly larger than the conventional values suggested in the literature, between 30 for k(s) = 2.5D(50) and 40 for k(s) = D-50. The values for other sediment sizes are closer to conventional values, within the usual range of 10-12 for k(s) = 2.5D(50), but somewhat higher at 16-22 for k(s) = D-50. The occurrence of sheet flow in a suspension regime appears possible, which may explain the significantly larger transport coefficients required for the finest grain size.
机译:通过尺寸分析和实验,研究了坝体溃决型水流在水平移动式沉积床上初始阶段粒径对沉积物迁移的影响。一项新的尺寸分析调和了描述颗粒尺寸对稳态流沉积物传输的影响的Bagnold公式中的不平衡尺寸,并表明沉积物传输与颗粒尺寸的平方根成反比,与Bagnold的经验相关性一致。测量了直径在0.22至2.65毫米范围内的石英颗粒的总传输速率。无因次变量之间的回归表明,迁移率数比Shields数更好地破坏了沉积物传输数据,并表明总沉积物传输与晶粒尺寸的平方根和四次方速度近似成反比。基于Shields数的Meyer-Peter Muller输运模型要求最细砂的输运系数明显大于文献中建议的常规值,k(s)= 2.5D(50)为30,k(s)为40( s)= D-50。其他沉积物尺寸的值更接近常规值,对于k(s)= 2.5D(50),通常在10-12的范围内,但对于k(s)= D-50,则在16-22的较高范围内。在悬浮状态下出现片状流动似乎是可能的,这可能解释了最细晶粒尺寸所需的明显更大的传输系数。

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