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Application of advanced laser and optical diagnostics towards non-thermochemical equilibrium systems.

机译:先进的激光和光学诊断技术在非热化学平衡系统中的应用。

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摘要

The Multidisciplinary University Research Initiative (MURI) research at Texas A&M University is concerned with the experimental characterization of non-thermal and non-chemical equilibrium systems in hypersonic (Mach>5) flowfields using experimental diagnostics, and is an interdisciplinary collaboration between the Chemistry and Aerospace Engineering departments. Hypersonic flight conditions often lead to non-thermochemical equilibrium (NTE) state of air, where the timescale of reaching a single (equilibrium) Boltzmann temperature is much longer than the timescale of the flow, meaning that certain molecular modes such as vibrational modes, may be much more excited than the translational or rotational modes of the molecule leading to thermal-nonequilibrium. A nontrivial amount of energy is therefore contained within the vibrational mode, and this energy cascades into the flow as thermal energy, affecting flow properties through the process of various vibrational-vibrational (V-V) and vibrational-translational (V-T) energy exchanges between the flow species. The research is a fundamental experimental study of these NTE systems and involves the application of advanced laser and optical diagnostics towards hypersonic flowfields. The research is broken down into two main categories: the application and adaptation of existing laser and optical techniques towards characterization of NTE, and the development of new molecular tagging velocimetry techniques which have been demonstrated in an NTE flowfield, but may be extended towards a variety of flowfields.
机译:德州农工大学的多学科大学研究计划(MURI)研究涉及使用实验诊断方法对高超声速(Mach> 5)流场中非热和非化学平衡系统进行实验表征,并且是化学与化学之间的跨学科合作。航空航天工程部门。高超音速飞行条件通常会导致空气的非热化学平衡(NTE)状态,达到单个(平衡)玻尔兹曼温度的时间尺度比流动的时间尺度长得多,这意味着某些分子模式(例如振动模式)可能会比导致热不平衡的分子的平移或旋转模式更加兴奋。因此,在振动模式中包含了不平凡的能量,并且该能量作为热能级联到流中,通过流之间的各种振动-振动(VV)和振动-平移(VT)能量交换的过程来影响流动特性。种类。这项研究是这些NTE系统的基础实验研究,涉及将先进的激光和光学诊断技术应用于高超声速流场。这项研究分为两大类:现有的激光和光学技术在NTE表征中的应用和适应,以及在NTE流场中已经证明的新的分子标记测速技术的发展,但可能会扩展到各种领域。流场。

著录项

  • 作者

    Hsu, Andrea Grace.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Chemistry Physical.;Engineering Aerospace.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 331 p.
  • 总页数 331
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:58

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