INFLUENCE OF THE DEGREE FLOODING AND COMPRESSION CROSS-SECTION OF A HYDRAULIC STRUCTURE WITH UNSTEADY LIQUID MOVEMENT

Iryna Bashkevych, Yurii Yevseichyk, Kostiantyn Medvediev, Oksana Parovenko, Iryna Sviatyshenko
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Abstract

The article is devoted to topical issues of the influence of hydraulic structures on the behavior of channel flow. Issues related to the operation of hydraulic structures located on irrigation canals were considered: - the influence of the degree of flooding on the elements of unsteady movement in open channels; - the influence of flow compression on the elements of unsteady motion in open flows. Quantitative assessment of the impact degree of flooding and compression on the elements of the flow during steady motion was carried out taking into account the recommendations of prof. Bolshakova VO, which are based on the use of the method of prof. Vasilieva OF The question influence of hydraulic structures on the behavior of the channel flow was solved using the equations of Saint-Venan by the numerical method, namely the method of run by the implicit-difference scheme. To close the system when using this method, the following conditions were taken into account: a - initial; b - left and right boundary conditions. The initial conditions are the presence of uniform movement in the channel. The left boundary condition is determined by the schedule of water supply to the channel, which has the form of a triangular hydrograph. The right boundary condition is determined by the known formula of a spillway with a wide threshold. The initial data were obtained from field observations. Quantitative assessment of the impact of flooding and flow compression on the final flow, velocity and depth results was performed. The issue of distribution of the support along the channel bed, which was formed due to the compression of the flow, was solved using the recommendations of E.V. Eremenko. The equation of flow continuity was considered - under the condition of changing the volume of water in the elementary section of the channel. The time of increase in the volume of water due to compression was determined from the formula obtained in the calculation process. Based on the condition that the time factor is a known value, it is possible to obtain a mathematical expression that determines the length of the propagation of the compression effect. Thanks to the obtained formulas, the calculated graphs of the relative maximum depth depending on the degree of flooding were constructed. With the help of these graphs it is possible to solve the problem of water supply in irrigation canals in the presence of flooding and compression of the flow (in case of unsteady movement).
非定常液体运动对水工结构水侵程度和压缩截面的影响
这篇文章专门讨论了水工建筑物对河道流动特性影响的热门问题。考虑了与位于灌溉渠上的水工结构运行有关的问题:-洪水程度对明渠中不稳定运动要素的影响;-流动压缩对开放流动中非定常运动要素的影响。定量评估的影响程度的洪水和压缩流的元素在稳定运动进行了考虑Bolshakova VO教授的推荐,基于使用的方法教授Vasilieva问题影响水工建筑物的通道流动的行为是解决使用Saint-Venan方程的数值方法,即由隐式差分方法的方案。在使用这种方法关闭系统时,考虑了以下条件:a -初始;B -左右边界条件。初始条件是通道中存在均匀运动。左边的边界条件是由通道的供水时间表决定的,它具有三角形的水流曲线的形式。正确的边界条件由已知的宽阈值溢洪道公式确定。最初的数据是从实地观测中获得的。定量评价了驱油和流体压缩对最终流量、速度和深度结果的影响。通过E.V. Eremenko的建议,解决了由于水流压缩而形成的沿河床支撑分布的问题。考虑了在改变河道初级段水量条件下的水流连续性方程。根据计算过程中得到的公式,确定了水因压缩而增加体积的时间。基于时间因子为已知值的条件,可以得到确定压缩效应传播长度的数学表达式。根据所得公式,构造了相对最大深度随淹水程度的计算图。在这些图的帮助下,可以解决灌溉渠中存在洪水和水流压缩(在不稳定运动的情况下)的供水问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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