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Scale Independent Linear Behavior of Alluvial Channel Flow

机译:冲积河道水流的尺度无关线性行为

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For flow in a rigid open channel with no bed sediment, the achievement of the special state of stationary equilibrium yields a linear characteristic. To examine the existence of a linear characteristic in alluvial channel flow, this study presents a direct formulation of the special equilibrium state following a variational approach. It finds that a linear relationship between shear stress and width/depth ratio of alluvial channels emerges under the commonly identified flow resistance and sediment transport conditions. Most importantly, this linear relationship yields not only the theoretical equilibrium channel geometry that is very close to a widely identified empirical counterpart but also a nondimensional number H, defined as the ratio of the relative increment of shear stress to the increment of width/depth ratio. This study suggests that H needs to be adopted as a criterion of hydraulic similitude for modeling sediment (bed-load) transport in alluvial channels.
机译:对于在没有床层沉积物的刚性明渠中流动,达到固定平衡的特殊状态会产生线性特征。为了研究冲积河道流动中线性特征的存在,本研究提出了一种采用变分法的特殊平衡态的直接公式。研究发现,在通常确定的流阻和泥沙输送条件下,剪应力与冲积通道宽度/深度比之间存在线性关系。最重要的是,这种线性关系不仅产生了非常接近于广泛确定的经验对应物的理论平衡通道几何形状,而且还产生了无量纲数H,该无量纲数H定义为剪应力的相对增量与宽度/深度比增量的比值。 。这项研究表明,需要采用H作为模拟冲积渠道中泥沙(床荷)运输的水力相似性标准。

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