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Turbulence flow field around two eccentric circular piers in scour hole

机译:冲孔中两个偏心圆墩周围的湍流场

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Flow pattern at single pier has been extensively studied by several investigators, but scanty work is available on turbulent flow pattern around piers placed in close proximity. The work explained in this research is concerned with an experimental study of the horseshoe vortex flow pattern and characteristics in a local equilibrium scour hole around two identical circular piers placed in the longitudinal direction to the flow with an eccentricity (transverse distance). Instantaneous three-dimensional velocities were measured by using an acoustic Doppler Velocimeter (ADV). The contours and distributions of the time-averaged velocity components, turbulence intensities and turbulence kinetic energy are presented at different azimuthal planes: 0°, 45°, - 45°, 90° and - 90°. Velocity vectors obtained from time-averaged velocity fields are used to show further flow features. The vorticity and circulation of the horseshoe vortex are determined by using a forward difference technique of computational hydrodynamics and the Stokes theorem, respectively. The eccentric pier arrangement and the interference between the piers play an important role in the creation and formation of the greater scour depth at the eccentric rear pier. Vortex strength of the eccentric rear pier is found higher than the front pier.
机译:几个调查人员对单个墩的流型进行了广泛的研究,但是对于紧邻的墩周围的湍流型却很少进行研究。这项研究中解释的工作与马蹄涡流模式和特性的实验研究有关,该马蹄涡流的模式和特性是围绕两个相同的圆形墩周围的局部平衡冲刷孔,这些墩在纵向上以偏心度(横向距离)流向。通过使用声学多普勒测速仪(ADV)测量瞬时三维速度。在不同的方位角平面(0°,45°,-45°,90°和-90°)上显示了时间平均速度分量,湍流强度和湍动能的轮廓和分布。从时间平均速度场获得的速度矢量用于显示其他流动特征。分别使用计算流体力学的前向差分技术和斯托克斯定理确定马蹄涡的涡度和环流。偏心墩的布置和墩之间的干涉在偏心后墩的较大冲刷深度的产生和形成中起着重要作用。偏心后墩的涡流强度高于前墩。

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