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Turbulent dispersion of slightly buoyant oil droplets and turbulent breakup of crude oil droplets mixed with dispersants.

机译:略带浮力的油滴的湍流分散以及与分散剂混合的原油滴的湍流破碎。

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摘要

In part I, high speed in-line digital holographic cinematography is used for studying turbulent diffusion of slightly buoyant 0.5-1.2 mm diameter diesel droplets (specific gravity of 0.85) and 50 mum diameter neutral density particles. Experiments are performed in a 50x50x70 mm3 sample volume in a controlled, nearly isotropic turbulence facility, which is characterized by 2-D PIV. An automated tracking program has been used for measuring velocity time history of more than 17000 droplets and 15000 particles. The PDF's of droplet velocity fluctuations are close to Gaussian for all turbulent intensities ( u'i ). The mean rise velocity of droplets is enhanced or suppressed, compared to quiescent rise velocity (Uq), depending on Stokes number at lower turbulence levels, but becomes unconditionally enhanced at higher turbulence levels. The horizontal droplet velocity rms exceeds the fluid velocity rms for most of the data, while the vertical ones are higher than the fluid only at the highest turbulence level. The scaled droplet horizontal diffusion coefficient is higher than the vertical one, for 1 u'i /Uq 5, consistent with trends of the droplet velocity fluctuations. Conversely, the scaled droplet horizontal diffusion timescale is smaller than the vertical one due to crossing trajectories effect. The droplet diffusion coefficients scaled by the product of turbulence intensity and an integral length scale is a monotonically increasing function of u'i /Uq.;Part II of this work explains the formation of micron sized droplets in turbulent flows from crude oil droplets pre-mixed with dispersants. Experimental visualization shows that this breakup starts with the formation of very long and quite stable, single or multiple micro threads that trail behind millimeter sized droplets. These threads form in regions with localized increase in concentration of surfactant, which in turn depends on the flow around the droplet. The resulting reduction of local surface tension, aided by high oil viscosity and stretching by the flow, suppresses capillary breakup and explains the stability of these threads. Due to increasing surface area and diffusion of dispersants into the continuous phase, the threads eventually breakup into ∼3 mum droplets.
机译:在第一部分中,使用了高速在线数字全息摄影技术来研究直径为0.5-1.2mm的轻浮柴油滴(比重为0.85)和直径为50um的中性密度颗粒的湍流扩散。实验是在受控的,几乎各向同性的湍流设备中以50x50x70 mm3的样品体积进行的,该设备以2-D PIV为特征。自动跟踪程序已用于测量超过17000个液滴和15000个粒子的速度时间历史。对于所有湍流强度(u'i),液滴速度波动的PDF值都接近高斯。与静态上升速度(Uq)相比,液滴的平均上升速度得到增强或抑制,这取决于较低湍流水平下的斯托克斯数,但在较高湍流水平下则无条件地得到增强。对于大多数数据,水平液滴速度rms超过流体速度rms,而垂直液滴的均方根值仅在最高湍流水平时才高于流体。对于1

著录项

  • 作者

    Gopalan, Balaji.;

  • 作者单位

    The Johns Hopkins University.;

  • 授予单位 The Johns Hopkins University.;
  • 学科 Engineering Mechanical.;Physics Fluid and Plasma.;Physics Optics.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 146 p.
  • 总页数 146
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:36:59

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