Simulation of Return Flow in Restricted Navigation Channel for Barge-tow Movements

S. Das, Samir Kumar Das, J. N. Kariya
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引用次数: 6

Abstract

Simulations of barge-tow movement in the sub-critical range along the Illinois River near Kampsville are performed to determine the return flow (RF) characteristics for upstream and downstream bound barge-tows. Simulations are carried out using the OpenFOAM® based CFD software for six barge-tow configurations considering two-dimensional shallow water equation. The RF velocities are simulated for 0s to 100s at an interval of 10s at nine different locations, taken across the river from vessel to bank for upstream and downstream bound barge-tows. The computed RF velocities at these points between the bow and the bank are analyzed and compared with the observed field data for identical conditions. The simulated RF velocity agrees well with the computed RF velocity of Hochestein and Adams, and Maynord and Siemsen, except closer to the barge-tow. Model simulation shows that the RF profiles (lateral velocity distributions transverse to vessel movement) vary with time and the length of the vessel. To understand the associated phenomena, drawdown and squat are computed using empirical formulations given by earlier researchers. The simulated result clearly indicates the location of the zero velocity point for downstream bound barge-tows. The present study would be helpful to hydraulic engineers, planners and biologists to predict RF hydrodynamic in a restricted channel.
驳船拖曳运动受限航道返流模拟
模拟了坎普斯维尔附近伊利诺伊河亚临界范围内的驳船拖曳运动,以确定上游和下游束缚驳船拖曳的回流特性。利用基于OpenFOAM®的CFD软件,考虑二维浅水方程,对六种驳船拖曳配置进行了模拟。以10秒为间隔,模拟了9个不同位置的RF速度,从上游和下游的驳船拖曳的船只到河岸,间隔为0到100秒。在相同条件下,将计算得到的弓形和侧壁之间这些点的射频速度与现场观测数据进行了分析和比较。模拟的射频速度与Hochestein和Adams以及Maynord和Siemsen计算的射频速度一致,除了更接近驳船拖曳。模型模拟表明,射频分布(横向速度分布横向血管运动)随时间和血管的长度而变化。为了理解相关现象,使用早期研究人员给出的经验公式计算下拉和下蹲。模拟结果清楚地显示了下游的驳船拖曳零速度点的位置。本研究对水利工程师、规划人员和生物学家在受限通道内预测射频水动力具有一定的指导意义。
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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