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Numerical investigations using LES: Exploring flow physics and mass exchange processes near groynes.

机译:使用LES进行数值研究:探究防波堤附近的流动物理学和质量交换过程。

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摘要

This dissertation presents a detailed numerical study using fully three-dimensional Large Eddy Simulation (LES) simulations of the flow and mass exchange processes in straight channels containing one or multiple embayments with vertical spanwise walls on one side corresponding to the presence of groynes in river reaches. The main focus is on identifying, understanding and quantifying the role played by the coherent structures and large-scale motions in the momentum and mass exchange processes within the embayments and between the embayments and the main channel. Of the three configurations that are studied, the first two contain only one embayment, and the water depth in the embayment area is equal to the one in the main channel. The two groynes are fully emerged in the first configuration and fully submerged in the second. This allows the study of the intensification of the flow three-dimensionality and acceleration of the mass exchange processes between the embayment and the channel due to the top interface and associated detached shear layer that are present in the submerged case. In both cases, the mass exchange across the embayment-channel interface is highly non-uniform across the depth. The third configuration corresponds to a straight channel with multiple groynes and is identical to one of the cases studied experimentally in a previous scaled model study. The mean water depth in the embayment area is about half that in the main channel; the width and length of the embayments are large compared to the depth; and the width over length ratio is relatively large such that a one gyre circulation pattern is observed inside the embayments. The model is validated with the experimental data available at the free surface. Even for shallow emerged embayments, most of the contaminant leaves the embayment through the top layer of the channel-embayment interface. The present study shows that 3D LES simulations can clarify several important aspects of flow past groyne fields that are very difficult or expensive to quantify using experimental techniques.
机译:本文利用全三维大涡模拟(LES)模拟了一条直线流道中的水流和质量交换过程,并进行了详细的数值研究,该直线通道包含一个或多个带有垂直垂直翼向壁的排泄物,其一侧与河段中的防波堤相对应。 。主要重点是识别,理解和量化连贯结构和大规模运动在嵌入物内部以及嵌入物与主要通道之间的动量和质量交换过程中所扮演的角色。在研究的三种配置中,前两种仅包含一个嵌套,并且嵌套区域中的水深等于主通道中的一个。两种防波堤在第一种配置中完全出现,在第二种配置中完全淹没。这允许研究由于淹没情况下存在的顶部界面和相关的分离的剪切层而导致的流动三维的增强和在嵌入物和通道之间的质量交换过程的加速。在这两种情况下,整个通道之间的质量交换在深度上都是高度不均匀的。第三种配置对应于具有多个防波堤的直通道,并且与先前的比例模型研究中实验研究的情况之一相同。隔离区的平均水深约为主航道的一半。嵌入物的宽度和长度比深度大。并且宽度与长度之比相对较大,以致在嵌套内部观察到一个回旋的循环模式。该模型已在自由表面获得的实验数据进行了验证。即使对于浅浮出的沉积物,大多数污染物也会通过通道-嵌入物界面的顶层离开沉积物。本研究表明,3D LES模拟可以阐明流过防波堤场的几个重要方面,这些方面很难使用实验技术进行量化或昂贵。

著录项

  • 作者

    McCoy, Andrew William.;

  • 作者单位

    The University of Iowa.;

  • 授予单位 The University of Iowa.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 324 p.
  • 总页数 324
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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