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Empirical Equation for Determination of Alternate Bar Height

机译:确定备用钢筋高度的经验公式

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A new empirical equation for alternate bar height is introduced. It is assumed that the bars are formed under a steady and uniform flow; the stage of interest is that where bars have grown to their fully developed state. The equation is developed on the basis of dimensional considerations and all data available to the authors; the formulation also incorporates findings by stability analysis. The data result from a total of 191 flume experiments reported in 16 different works carried out from 1961 to 2014 using either sand or gravel as bed material. Both fully rough and transitionally rough flows were used in the experiments. Overall, width-to-depth ratios and relative depths varied from 3.5 to 54.4 and 3.8 to 191, respectively; the ratios of bed shear stress to critical bed shear stress ranged from 1.1 to 14.7. Data from the Naka River, Japan, are also used. The equation correlates bar height, normalized by flow depth, with the excess width-to-depth ratio (B/h) with regard to the smallest, or critical, value of B/h at which alternate bars occur as well as with the relative depth and, in the case of transitionally rough flows, also the grain-size Reynolds number. It is shown that when compared with previous empirical equations, the present equation produces a considerably improved overall alignment of the data with the perfect agreement line and a significant larger (nearly double) percentage of data falling within the 20% error range. The results by the present equation are also substantially more congruent with those derived from existing theoretical and numerical analyses of the development of alternate bars, and more specifically, those resulting from a stability analysis of the phenomenon. As a by-product of this work, a first comparative evaluation of existing equations for alternate bar height is also presented.
机译:引入了一个新的经验公式,用于替代钢筋高度。假定这些条是在稳定且均匀的流动下形成的。感兴趣的阶段是酒吧已经发展到完全发展的状态。该方程是在尺寸考虑和作者可获得的所有数据的基础上开发的。配方还结合了稳定性分析的发现。该数据来自1961年至2014年使用砂或砾石作为床层材料进行的16项不同工作中总共进行的191次水槽实验的结果。实验中使用了完全粗糙和过渡粗糙的流量。总的来说,宽深比和相对深度分别从3.5到54.4和3.8到191不等;床层剪应力与临界床层剪应力之比范围为1.1至14.7。还使用了日本那卡河的数据。该方程将钢筋高度(通过流动深度标准化)与相对于出现替代钢筋的最小(或临界)B / h值(即B / h)的过量宽度与深度之比(B / h)以及与深度,以及在过渡性粗糙流动的情况下,还有雷诺数。结果表明,与以前的经验方程相比,本方程可显着改善数据与理想一致线的整体对齐方式,并且在20%误差范围内的数据百分比显着提高(几乎翻倍)。通过本方程得出的结果也与从现有的替代钢筋发展的理论和数值分析得出的结果更加一致,更具体地说,与由现象的稳定性分析得出的结果完全一致。作为这项工作的副产品,还提出了对替代钢筋高度的现有方程式的第一个比较评估。

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