ASSESSMENT OF THE IMPACT OF BEND TYPE ON FLOW CHARACTERISTICS IN 180° COMPOUND BENDS

R. Ghobadian, Dejan Djordjevic, Masha Basiri
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Abstract

River bends are rarely simple, i.e., the bend radius is rarely constant throughout the bend length. They are rather irregular, i.e. their shape in the plan can be approximated with different bend radii. Since the bulk of previous research is concerned with simple bends, this paper aims at studying the effect of variable bend curvature on flow in an irregular bend with two bend radii. The effect is studied numerically, using a 3D finite volume based model SSIIM1, which solves Reynolds-Averaged Navier-Stokes (RANS) equations with two-equation turbulence model closure. After successful calibration against experimental data from the simple 180° bend, the model is used to simulate flow in 180° variable curvature bends with the following combinations of relative curvature: mild-mild, mild-sharp and sharp-mild. Results have shown that: (1) The maximum spanwise water surface slope always develops at the entrance to the sharp bend, (2) the greatest slope develops in the sharpmild layout, (3) the location where the maximum velocity path cuts the bend centerline does not change with the bend layout (simple or variable curvature), (4) the bend curvature sequence affects lateral velocity distributions of the streamwise velocity only in the middle of the bend, (5) the relative curvature sequence has an adverse effect on the size of two regions with maximum bed shear stress – one around the curvature inflection point and the other close to the bend exit.
弯道型式对180°复合弯道流动特性影响的评价
河流的弯曲很少是简单的,也就是说,弯曲半径很少在整个弯曲长度上是恒定的。它们是相当不规则的,即它们在平面上的形状可以用不同的弯曲半径来近似。由于以往的大部分研究都是关于简单弯道的,因此本文旨在研究具有两个弯道半径的不规则弯道中变弯道曲率对流动的影响。利用三维有限体积模型SSIIM1,通过双方程湍流模型闭包求解reynolds -平均Navier-Stokes (RANS)方程,对该效应进行了数值研究。在对简单180°弯道的实验数据进行校正成功后,利用该模型模拟了180°变曲率弯道中相对曲率的组合:温和-温和、温和-尖锐和尖锐-温和。结果表明:(1)最大跨向水面坡度总是在急弯入口处发育;(2)最大坡度在急弯平缓布局中发育;(3)最大流速路径切断弯道中心线的位置不随弯道布局(简单曲率或变曲率)而变化;(4)弯道曲率顺序只影响弯道中部的横向流速分布。(5)相对曲率序列对曲率拐点附近和靠近弯道出口的两个床层剪应力最大区域的大小有不利影响。
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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