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The entrainment and mixing of a round buoyant turbulent jet in cross-flow.

机译:圆形浮力湍流射流的夹带和混合。

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摘要

This thesis summaries the results of an experimental investigation of the near-field behavior and physics of the round buoyant turbulent jet in crossflow. In particular, the study centers on the physics associated with entrainment and mixing phenomena of the jet with the goal of better understanding the trends of trajectory and dilution behavior.;The experiments involved a downward discharge of cold nitrogen gas (at about ;The results of the experiments yield a comprehensive picture of the near-field flow patterns, flow interactions, and flow-transport physics for a buoyant jet in crossflow. Key, phenomenologically distinct zones of flow which comprise the near-exit structure of the jet are identified. The flow patterns within these zones, and thus the structure of the near-exit jet, are found to be extremely dependent on the value of the velocity ratio. Flow interactions in this region establish flow patterns which have a pronounced influence on the downstream development of the jet. A method is developed to fully document the trajectory and dilution behavior of the jet with the key parameters of influence. Trajectory and dilution are found to correlate with two parameters, namely, the velocity ratio and the density-difference ratio. Finally, unsteady, large-scale mixing motions within the near-exit flow zones are documented. Distinct modes of large-scale mixing which are responsible for the rapid and extensive dispersion observed in the jet are revealed by this study.
机译:本文总结了对横流圆形浮力湍流射流近场行为和物理性质进行实验研究的结果。特别是,研究集中在与射流的夹带和混合现象有关的物理学上,目的是更好地了解弹道和稀释行为的趋势。;实验涉及向冷氮气的向下排放(大约;实验给出了横流中浮力射流的近场流动模式,流动相互作用和流动传输物理学的综合图景,确定了构成射流近出口结构的关键的,在现象学上不同的流动区域。在这些区域内的流动模式,以及因此而形成的近出口射流,都极其依赖于速度比的值,在该区域内的流动相互作用建立了流动模式,对流动的下游发展有显着影响。开发了一种方法,以影响的关键参数完全记录射流的轨迹和稀释行为。与两个参数相关,即速度比和密度差比。最后,记录了接近出口流动区域内的不稳定,大规模混合运动。这项研究揭示了不同的大规模混合模式,这些模式导致了喷射中迅速而广泛的分散。

著录项

  • 作者

    Thoman, David Charles, Jr.;

  • 作者单位

    University of Illinois at Urbana-Champaign.;

  • 授予单位 University of Illinois at Urbana-Champaign.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1991
  • 页码 337 p.
  • 总页数 337
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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