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首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >A stability criterion inherent in laws governing alluvial channel flow
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A stability criterion inherent in laws governing alluvial channel flow

机译:控制冲积河道流量的法律固有的稳定性标准

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The stability criterion of maximum flow efficiency (MFE) has previously been found inherent in typical alluvial channel flow relationships, and this study investigates the general nature of this criterion using a wider range of flow resistance and bedload transport formulae. For straight alluvial channels, in which the effect of sediment sorting is insignificant, our detailed mathematical analysis demonstrates that a flow efficiency factor ε occurs generally as the ratio of sediment (bedload) discharge Q_s to stream power Ω (γQS) in the form of ε = Q_s/Ω~λ (λ = 0.86-0.88). When ε is maximized (i.e. Q_s is maximized or Ω is minimized), maximally efficient straight channel geometries derived from most flow resistance and bedload transport formulae are found compatible with observed bankfull hydraulic geometry relations. This study provides support for the use of the criteria of MFE, maximum sediment transporting capacity and minimum stream power for understanding the operation of alluvial rivers, and also addresses limitations to the direct application of its findings.
机译:先前已发现典型冲积河道流量关系中固有的最大流效率(MFE)稳定性标准,并且本研究使用更广泛的流阻和床载输运公式来研究该标准的一般性质。对于平直的冲积河道,其中泥沙分选的影响微不足道,我们的详细数学分析表明,当泥沙(基础负荷)排放Q_s与流功率Ω(γQS)之比为ε时,通常会产生流效率系数ε = Q_s /Ω〜λ(λ= 0.86-0.88)。当ε最大化(即Q_s最大化或Ω最小化)时,发现从大多数流阻和床载传输公式得出的最大有效直通道几何形状与观察到的全部水力几何关系兼容。这项研究为使用MFE标准,最大的泥沙输送能力和最小的河流功率来理解冲积河流的运行提供了支持,并且还解决了直接应用其研究结果的局限性。

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