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Part I. 3DPTV: Advances and error analysis. Part II. Extension of Guderley's solution for converging shock waves.

机译:第一部分:3DPTV:改进和错误分析。第二部分Guderley解决方案的扩展,以收敛冲击波。

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摘要

This work is divided into two unrelated parts. In the first part, a full three-dimensional particle tracking system was developed and tested. Three images, from three separate CCDs placed at the vertices of an equilateral triangle, permit the three-dimensional location of particles to be determined by triangulation. Particle locations measured at two different times can then be used to create a three-component, three-dimensional velocity field. Key developments are the ability to accurately process overlapping particle images, offset CCDs to significantly improve effective resolution, treatment of dim particle images, and a hybrid particle tracking technique ideal for three-dimensional flows when only two sets of images exist. An in-depth theoretical error analysis was performed, which gives the important sources of error and their effect on the overall system. This error analysis was verified through a series of experiments, and a vortex flow measurement was performed.;In the second part, the problem of a cylindrically or spherically imploding and reflecting shock wave in a flow initially at rest was examined. Guderley's strong shock solution around the origin was improved by adding two more terms in the series expansion solution for both the incoming and the reflected shock waves. A series expansion was also constructed for the case where the shock is still very far from the origin. In addition, a program based on the characteristics method was written. Thanks to an appropriate change of variables, the shock motion could be computed from virtually infinity to very close to the reflection point. Comparisons were made between the series expansions, the characteristics program, and the results obtained using an Euler solver. These comparisons showed that the addition of two terms to the Guderley solution significantly increases the accuracy of the series expansion.
机译:这项工作分为两个不相关的部分。在第一部分中,开发并测试了完整的三维粒子跟踪系统。来自放置在等边三角形顶点处的三个单独的CCD的三个图像,可以通过三角测量确定粒子的三维位置。然后可以将在两个不同时间测量的粒子位置用于创建三分量,三维速度场。关键的发展是能够精确处理重叠的粒子图像,补偿CCD以显着提高有效分辨率的能力,暗粒子图像的处理以及仅存在两组图像时理想的三维流动混合杂物跟踪技术的能力。进行了深入的理论错误分析,它给出了重要的错误来源及其对整个系统的影响。通过一系列实验验证了该误差分析,并进行了涡流测量。在第二部分中,研究了圆柱或球形内爆并在最初静止的流中反射冲击波的问题。通过在入射声波和反射声波的级数展开解中增加两个术语,改善了Guderley围绕原点的强震解决方案。还针对冲击距离原点仍很远的情况构造了一系列扩展。另外,编写了基于特征方法的程序。得益于变量的适当更改,可以将冲击运动从无穷大到非常接近反射点的位置进行计算。在级数展开,特征程序和使用Euler求解器获得的结果之间进行了比较。这些比较表明,向Guderley解中添加两个项会大大提高级数展开的准确性。

著录项

  • 作者

    Ponchaut, Nicolas F.;

  • 作者单位

    California Institute of Technology.;

  • 授予单位 California Institute of Technology.;
  • 学科 Engineering Aerospace.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 169 p.
  • 总页数 169
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 航空、航天技术的研究与探索;
  • 关键词

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