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Optical diagnostics and computational modeling of reacting and non-reacting single and multiphase flows.

机译:反应性和非反应性单相和多相流的光学诊断和计算模型。

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摘要

Three critical problem domains namely water transport in PEM fuel cell, interaction of vortices with diffusion flames and laminar diffusion layers and thermo-physical processes in droplets heated by a plasma or monochromatic radiation have been analyzed in this dissertation.; The first part of the dissertation exhibits a unique, in situ, line-of-sight measurements of water vapor partial pressure and temperature in single and multiple gas channels on the cathode side of an operating PEM fuel cell. Tunable diode laser absorption spectroscopy was employed for these measurements for which water transitions sensitive to temperature and partial pressure were utilized. The technique was demonstrated in a PEM fuel cell operating under both steady state and time-varying load conditions.; The second part of the dissertation is dedicated to the study of vortex interaction with laminar diffusion flame and non-reacting diffusion layers. For the non-reacting case, a detailed computational study of scalar mixing in a laminar vortex is presented for vortices generated between two gas streams. A detailed parametric study was conducted to determine the effects of vortex strength, convection time, and non-uniform temperature on scalar mixing characteristics. For the reacting case, an experimental study of the interaction of a planar diffusion flame with a line vortex is presented. The flame-vortex interactions are diagnosed by laser induced incandescence for soot yield and by particle image velocimetry for vortex flow characterization. The soot topography was studied as a function of the vortex strength, residence time, flame curvature and the reactant streams from which vortices are initiated. The third part of the dissertation is modeling of thermo-physical processes in liquid ceramic precursor droplets injected into plasma as used in the thermal spray industry to generate thermal barrier coatings on high value materials. Models include aerodynamic droplet break-up process, mixing of droplets in the high temperature plasma, heat and mass transfer within individual droplets as well as droplet precipitation and internal pressurization. The last part of the work is also concerned with the modeling of thermo-physical processes in liquid ceramic precursor droplets heated by monochromatic radiation. Purpose of this work was to evaluate the feasibility of studying precipitation kinetics and morphological changes in a droplet by mimicking similar heating rates as the plasma.
机译:本文研究了三个关键问题领域,即PEM燃料电池中的水传输,涡旋与扩散火焰和层状扩散层的相互作用以及等离子体或单色辐射加热的液滴中的热物理过程。论文的第一部分展示了在运行中的PEM燃料电池阴极侧的单个和多个气体通道中水蒸气分压和温度的独特的原位视线测量结果。这些测量采用可调二极管激光吸收光谱法,其中利用了对温度和分压敏感的水跃迁。该技术已在稳态和时变负载条件下运行的PEM燃料电池中得到证明。论文的第二部分致力于研究层流扩散火焰和非反应扩散层的涡旋相互作用。对于非反应情况,针对两个气流之间产生的涡旋,对层流涡旋中的标量混合进行了详细的计算研究。进行了详细的参数研究,以确定涡旋强度,对流时间和温度不均匀对标量混合特性的影响。对于反应情况,提出了平面扩散火焰与线涡相互作用的实验研究。火焰-涡旋相互作用通过激光诱导的白炽来诊断烟尘产生,并通过粒子图像测速法进行涡流表征。研究了烟灰的形貌与旋涡强度,停留时间,火焰曲率和引发旋涡的反应物流的关系。论文的第三部分是对在热喷涂工业中用于在高价值材料上产生热障涂层的液体陶瓷前体液滴注入等离子体的热物理过程进行建模。模型包括气动液滴分解过程,高温等离子体中的液滴混合,单个液滴内的热量和质量传递以及液滴的沉淀和内部加压。工作的最后一部分还涉及通过单色辐射加热的液态陶瓷前驱体液滴中的热物理过程建模。这项工作的目的是通过模拟与等离子体相似的加热速率来评估研究液滴中的沉淀动力学和形态变化的可行性。

著录项

  • 作者

    Basu, Saptarshi.;

  • 作者单位

    University of Connecticut.;

  • 授予单位 University of Connecticut.;
  • 学科 Engineering Mechanical.; Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 252 p.
  • 总页数 252
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;工程材料学;
  • 关键词

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