刺堤方向对河道弯道河床变化的影响

M. Athar, Talib Mansoor, Nishank Aggarwal
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引用次数: 3

摘要

马刺堤防也被称为格罗恩斯,经常被用来转移或吸引主要结构的水流,以保护他们的生命。这些结构可以是桥墩、桥台或任何类似的水力学结构。在河道凹侧还采用了棱堤,以减少对河岸的切割。近年来,许多研究者对丁坝进行了大量的研究工作,详细研究了丁坝的各种水力和几何参数,如流量、泥沙大小、流速、剪应力、丁坝形状、大小和淹没度等。但大多数研究都是直接公开的。对弯曲通道的研究很少,只研究了它们的相似效应。本文重点研究了曲流河道中直堤的方位和位置对下游河床的影响。在本研究中,试验工作是在80°弯道中进行的,允许在无柱堤的通道中恒定流量(Q = 4.5 l/s)通过。发现外滩附近在角位移θ = 60°~ 80°处冲刷最大。为了尽量减少这种冲刷,通过改变堤角α = 60°,90°和120°,分别在角位移θ = 20°,40°和60°安装了直堤。结果表明,在θ = 60°处安装角距θ = 40°处安装角距θ = 40°处安装角距θ = 60°处安装角距θ = 60°处安装角距θ = 60°处安装角距θ = 60°处安装角距可减少θ = 60°处的冲刷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Spur Dyke’s Orientation on Bed Variation in Channel Bend
Spur dykes also known as Groynes are often used to either divert or attract the flow from the main structure to safeguard their life. Those structures may be bridge piers, abutments or any similar hydraulics structures. Spur dykes are also used to save the cutting of banks on concave side of stream. Lots of work have been done in recent past on spur dykes by many investigators in which various hydraulic and geometrical parameters of spur dykes such as discharge, sediment size, flow velocity, shear stress, spur dykes shape, size and submergence etc. are studied in detail. But mostly all the studies were pointed out in straight open channels. Very few studies were done in curved channel and only their similar effects were studied. In present thesis main emphasis is given to study the effect of orientation and location of spur dykes in meandering channel on the bed of downstream side. In the present study experimental work has been carried out in 80° bend and constant discharge (Q = 4.5 l/s) is allowed to pass in channel without spur dyke. It is found that maximum scouring occurs at angular displacement θ = 60° to 80° in the vicinity of outer bank. To minimize this scouring, spur dyke has been installed at angular displacement θ = 20°, 40° & 60° by changing the dyke angle α = 60°, 90° & 120° respectively. It is found that scouring at θ = 60° is reduced by installing spur dyke at angular displacement θ = 40° which is oriented at α = 60° and scouring at θ = 80° is reduced by installing spur dyke at angular displacement θ = 60° which is oriented at α = 60°.
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