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Internal connectivity of meandering rivers: Statistical generalization of channel hydraulic geometry

机译:蜿蜒河流的内部连通性:河道水力几何学的统计概括

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摘要

The geometry of rivers has been characterized in terms of downstream and at-a-station hydraulic geometry, based on individual cross sections. Such analyses do not, however, provide insight as to how these cross sections are connected. We generalize the concept of hydraulic geometry, using data on bathymetry from four reaches of meandering rivers that include at least five bends. We quantify connectivity in terms of the probability that a connected path exists such that a given attribute remains within specified bounds along it. While the concept is general, here we apply it to vessel navigability. We develop a predictor for navigability in meandering rivers, which requires only the following, relatively easily obtained input: vessel draft, vessel width, bankfull depth, bankfull width, relative difference between current and bankfull water surface elevation, and length of desired navigation path. The predictor is applicable to both bankfull and below-bankfull stage. A key input parameter is the standard deviation of the probability distribution of depth. This parameter, in and of itself, yields no information on connectivity as it does not capture the spatial orientation of depth variation. We find, however, that (a) the probability function for connectivity does depend on this parameter, and (b) its use allows for an approximate similarity collapse of the probability function, so providing a quasi-universal predictive relation applying to all four reaches. The results also suggest potential application to more complex forms for connectivity that involve other or multiple in-stream physical variables.
机译:河流的几何形状已根据各个断面的下游和站台水力几何形状进行了表征。但是,此类分析无法提供有关这些横截面如何连接的见解。我们使用来自至少包括五个弯头的四个蜿蜒河段的测深数据来概括水力几何学的概念。我们根据连通路径存在的可能性来量化连通性,以使给定属性沿其保持在指定范围内。虽然概念很笼统,但在这里我们将其应用于船只的航行性。我们开发了一条蜿蜒河流的可航行性预测器,该预测器仅需要以下相对容易获得的输入:船吃水,船宽,河岸深度,河岸宽度,当前和河岸水面高程之间的相对差以及所需航行路径的长度。该预测器适用于银行满额阶段和低于银行满额阶段。关键输入参数是深度概率分布的标准偏差。此参数本身不会产生任何连通性信息,因为它无法捕获深度变化的空间方向。但是,我们发现(a)连通性的概率函数的确取决于此参数,并且(b)连通性的使用允许概率函数的近似相似性崩溃,因此提供了适用于所有四个范围的准通用预测关系。结果还表明,可能将其应用到涉及其他或多个流内物理变量的更复杂形式的连接中。

著录项

  • 来源
    《Water resources research》 |2015年第9期|7485-7500|共16页
  • 作者单位

    Univ Illinois, Dept Civil & Environm Engn, Urbana, IL 61820 USA;

    Villanova Univ, Dept Civil & Environm Engn, Villanova, PA 19085 USA;

    Rice Univ, Dept Earth Sci, Houston, TX USA;

    Univ Texas Austin, Jackson Sch Geosci, Austin, TX 78712 USA;

    Univ Illinois, Dept Geol, Urbana, IL USA|Univ Illinois, Dept Civil & Environm Engn, Urbana, IL 61820 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    connectivity; hydraulic geometry; navigation;

    机译:连通性;水力几何;导航;

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