孔坝对闸门下游最大冲刷深度的影响

Elsayed M. Elshahat, Gamal M. AbdelAal, Samar Hassan, Eslam Eltohamy
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引用次数: 0

摘要

目的:通过试验研究了在水闸下游设置孔洞对最大冲刷深度的影响。背景:先前的研究表明,筛网可以有效地用于消散水工结构下游水的能量。目的:本研究通过一系列试验,探讨了在水工构筑物下游使用多孔筛网对最大冲刷深度的影响。方法:采用不同孔隙度(10.3%、18.3%、28.5%、41.1%)、倾角为90°的单孔储层。在研究中使用了不同形状孔(圆形孔、矩形孔和方孔)的穿孔窗台。本研究的主要参数为孔洞的孔隙率、孔洞的不同形状、下游水深和Gate - Froude数(F G),取值范围为2.15 ~ 4.7。模拟水工结构的闸门开度在实验工作中分别在4cm、5cm、6cm高度进行调整。结果:孔隙率(Ao/As)的增加增加了筛分效应,减小了最大冲刷深度。此外,结果表明,方形孔的井架在降低最大冲刷深度方面优于圆形孔和矩形孔的井架。结论:方孔率为41.1%的孔洞使闸门下游最大冲刷深度降低60%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Perforated Sills on Maximum Scour Depth Downstream From a Sluice Gate
Aims: Experiments were conducted to study the effect of using a perforated sill on maximum scour depth downstream from a sluice gate. Background: Previous studies have shown that screens may be utilized efficiently for dissipating the energy of water downstream of a hydraulic structure. Objective: For the present study, a series of experiments was conducted to investigate the effect of using a perforated screen sill on the maximum scour depth downstream of a hydraulic structure. Methods: In the present study, a single perforated sill with varying porosity (10.3%, 18.3%, 28.5%, and 41.1%) and an inclination angle of 90° were used. Perforated sill with different shapes of holes (circular, rectangular, and square holes) was used during the study. The major parameters for the present study are the porosity of the perforated sill, different shapes of holes, downstream water depth, and the Gate Froude number (F G ) for a range covering from 2.15 to 4.7. The gate opening simulating a hydraulic structure is adjusted at heights of 4 cm, 5 cm, and 6 cm during the experiments work. Result: The results revealed that an increase in the sill porosity (Ao/As) increases the screen effect to reduce the max scour depth. In addition, the results showed that the sill with square holes is better than the sill with circular and rectangular holes in reducing the maximum scour depth. Conclusion: The perforated sill with a square porosity of 41.1% reduces the maximum scour depth downstream of a sluice gate by 60%.
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