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Coherent structures in turbulent flows: Experimental studies on the turbulence of multiphase plumes and tidal vortices.

机译:湍流中的相干结构:多相羽流和潮汐涡流湍流的实验研究。

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摘要

This dissertation presents the turbulence of multiphase plumes and tidal vortices by studying and quantifying coherent structures that affect the dynamics of the flow. The measurements presented in this dissertation were taken using particle image velocimetry (PIV). After preprocessing the images and conducting the PIV analysis to get the final velocity fields, the local swirl strength was used to identify coherent structures (vortices) in the flow. This dissertation used the identified vortices to quantify the turbulent properties of the flows.;The mean and turbulent properties of bubble plumes are found to be self-similar within the measured air flow rates when appropriately nondimensionalized. The time-averaged velocity profile was shown to have a Gaussian distribution when nondimensionalized by the centerline velocity and plume radius. The bubble plumes were found to have the most energetic vortices along the plume edge and a modulated turbulent energy spectrum with a slope in the inertial subrange from -7/6 instead of the classical -5/3.;The mean and turbulent properties of an inertial particle plume are presented, revealing the time-averaged velocity and vorticity profiles to be self-similar for all cases when nondimesionalized by the centerline velocity and plume radius. The average vortex properties were not self-similar for all flow cases with the largest two particles sizes being self-similar and the smallest particle vortex properties being similar to bubble plume data. Despite the difference in vortex properties, the turbulent energy spectra in inertial particle plumes followed the same modulation as the bubble plumes.;PIV experiments from the tidal starting-jet vortices detail the influence of a finite channel length using identified vortice. The results show the trajectory and development of the tidal starting-jet vortices to be changed by a region of vorticity that develops inside the channel and is expelled as a vortex during the ebb tide. This expelled lateral boundary layer vortex is shown to move the starting-jet vortex away from the tidal jet shear layer thus reducing the input vorticity. When the expelled boundary layer vortex strength is 1/5 the starting-jet vortex the system dynamics change resulting in a deviation in the starting-jet vortices' trajectory.;This dissertation successfully uses the local swirl strength to quantify the turbulence of multiphase plumes and tidal starting-jet vortices. Using these results, engineers will be able to better predict the efficiency of CO2 ocean sequestration and tidal flushing. Furthermore, the techniques of quantifying coherent structures developed in this dissertation can be applied to a multitude of turbulent flows.
机译:通过研究和量化影响流动动力学的相干结构,本文提出了多相羽流和潮汐涡流的湍流。本文采用粒子图像测速仪(PIV)进行测量。在对图像进行预处理并进行PIV分析以获得最终速度场之后,使用局部涡流强度来识别流中的相干结构(涡旋)。本文使用确定的涡旋来量化气流的湍流特性。当适当地对尺寸进行了无量纲化时,发现在测量的空气流量范围内,气泡羽流的平均和湍流特性是自相似的。当未通过中心线速度和羽流半径进行量纲化时,时间平均速度曲线显示为高斯分布。发现气泡烟羽沿烟羽边缘具有最高能量的涡旋,并且具有调制的湍流能谱,其斜率在-7/6的惯性范围内,而不是经典的-5/3。提出了惯性粒子羽流,揭示了在没有通过中心线速度和羽流半径进行无维数化的情况下,所有情况下时间平均速度和涡度曲线都是自相似的。在所有流动情况下,平均涡旋特性并非都是自相似的,其中最大的两个粒径是自相似的,最小的旋涡特性与气泡羽流数据相似。尽管涡流特性有所不同,但惯性粒子羽流中的湍流能谱遵循与气泡羽流相同的调制方式。潮汐起始射流涡流的PIV实验使用已确定的涡流详细描述了有限通道长度的影响。结果表明,潮汐起始射流涡旋的轨迹和发展将被通道内发展并在退潮期间作为涡旋排出的涡旋区域改变。该排出的横向边界层涡流显示为使起始喷射涡流移离潮汐喷射剪切层,从而降低了输入涡度。当被驱逐的边界层涡旋强度为初始喷射涡旋的1/5时,系统动力学发生变化,从而导致初始喷射涡旋的轨迹发生偏离。本论文成功地利用局部涡旋强度来量化多相羽流和湍流的湍流。潮汐开始喷气涡。利用这些结果,工程师将能够更好地预测二氧化碳封存和潮汐冲洗的效率。此外,本论文提出的量化相干结构的技术可以应用于多种湍流。

著录项

  • 作者

    Bryant, Duncan Burnette.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Civil.;Engineering Marine and Ocean.;Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 129 p.
  • 总页数 129
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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