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Comparative Hydrodynamic Study of Rigid-Lid and Level-Set Methods for LES of Open-Channel Flow

机译:刚性盖和水平设定方法对开放通道流动的比较流体动力学研究

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摘要

Computational modeling of open-channel flows at low Froude (F) numbers is often carried out using the rigid-lid assumption to prescribe the water surface location. However, the presence of wall-mounted hydraulic structures could cause F to locally exceed unity, inducing a transition from subcritical to supercritical flow, locally accelerate the flow generating high-energy turbulent eddies at a constriction region, and lead to the formation of backwater at upstream regions. Under such circumstances, the rigid-lid assumption may not be adequate to obtain reliable flow field simulations. Previous investigation to examine the effect of a rigid-lid assumption on large-eddy simulation (LES) of a low-Reynolds open-channel flow showed that the second-order turbulent statistics are altered depending on the free-surface resolving method. In this work, we seek to study the rigid-lid effect on high-Reynolds LES applicable to natural river flows. We employed an in-house Virtual Flow Simulator (VFS-Geophysics) model in its LES mode to simulate the flow field in a similar test case that is scaled up to obtain a high Reynolds of 7.9x104. We performed LES evaluating the two free-surface resolving approaches: rigid-lid and level-set. The flow field and free-surface computations were validated using a series of measured data that we obtained by carrying out laboratory experiments. Our LES results indicate that at near-bed regions of the flume and around the bridge abutment, both the first- and second-order turbulent statistics are influenced by the method selected to prescribe the water surface.
机译:在低FRoude(F)编号处的开放通道流的计算建模通常使用刚性盖假设进行以规定水面位置。然而,壁挂式液压结构的存在可能导致F到局部超过统一,诱导从亚临界到超临界流的过渡,局部加速在收缩区域处产生高能量湍流涡流,并导致后水的形成上游地区。在这种情况下,刚性盖子假设可能不足以获得可靠的流场模拟。先前的研究,以检查刚性盖假设对低雷诺的大型仿真(LES)的效果开放通道流程,表明二阶湍流统计取决于自由表面分辨方法。在这项工作中,我们寻求研究适用于天然河流的高雷诺LES的刚性盖子影响。我们在其LES模式下采用内部虚拟流模拟器(VFS-Geophysics)模型,以模拟类似的测试用例中的流场,该测试案例被缩放,以获得7.9x104的高雷诺。我们执行了LES评估了两个自由表面解决方法:刚性盖子和级别设置。使用我们通过进行实验室实验获得的一系列测量数据来验证流场和自由表面计算。我们的LES结果表明,在水槽的近床区域和桥梁邻接周围,第一阶和二阶湍流统计受到选定的方法以规定水面的影响。

著录项

  • 来源
    《Journal of Hydraulic Engineering》 |2019年第1期|04018077.1-04018077.15|共15页
  • 作者单位

    SUNY Stony Brook Coll Engn & Appl Sci Dept Civil Engn Stony Brook NY 11794 USA;

    SUNY Stony Brook Coll Engn & Appl Sci Dept Civil Engn Stony Brook NY 11794 USA;

    SUNY Stony Brook Coll Engn & Appl Sci Dept Civil Engn Stony Brook NY 11794 USA;

    SUNY Stony Brook Coll Engn & Appl Sci Dept Civil Engn Stony Brook NY 11794 USA;

    Calif Dept Transportat Bridge Scour Risk Management Sacramento CA 95819 USA;

    SUNY Stony Brook Coll Engn & Appl Sci Dept Civil Engn Stony Brook NY 11794 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Level set; Rigid lid; Large-eddy simulation (LES); Open-channel flow;

    机译:水平设定;刚性盖子;大涡模拟(LES);开放式流量;

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