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Non-premixed combustion with swirl.

机译:非预混燃烧和涡流。

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摘要

The influence of a near-critical swirling flow on the shape of the Burke-Schumann reaction zone in a straight cylindrical chamber is investigated by asymptotic and numerical means. Two cases are considered. The first part of the study investigates the effect of swirl on the shape of a diffusion flame in the absence of heat release. The underlying assumptions are a high Reynolds number flow and infinite-rate chemistry. An asymptotic analysis is developed to study the way in which swirl at near-critical levels affects the fuel/oxidizer mixture mass fraction distribution. It is first shown that the leading-order changes of the velocity field from a columnar state can be described by a nonlinear reduced-order model. Then, these flow changes are used to calculate the corrections due to swirl to the classical Burke-Schumann flame structure. The asymptotic results are complemented by extensive direct numerical simulations at finite Reynolds numbers and a broader range of swirl. The numerical solutions agree with the asymptotic results at large values of the Reynolds numbers. The asymptotic and numerical computations are used to study the interaction between vortex breakdown and the size of the reaction zone in the case of no heat release.; The second part of the study reinstates the heat release, so as to describe the effects of thermal expansion. The effect of weak exothermicity is first examined by means of a small-disturbance approach. A computational study is then undertaken to consider the influence of order-unit heat release. The asymptotic study shows that weak exothermicity has a considerably larger effect on the flow structure. Also, the critical swirl ratio for transition to vortex breakdown of a reacting flow decreases with the increase of heat release. The numerical results agree with the trend of the asymptotic predictions for very small amounts of heat release. However, for larger amounts, the numerical results show that the critical swirl ratio increases with the amount of heat release. This shows that the asymptotic approach is limited to very small amounts of heat release. The numerical computations also show that when the swirl ratio approaches the critical level for the appearance of vortex breakdown, the reaction zone decreases in its length, expands radially, and becomes more compact near the pipe inlet.
机译:通过渐近和数值方法研究了近临界旋流对直圆柱室内Burke-Schumann反应区形状的影响。考虑了两种情况。研究的第一部分研究了在没有热释放的情况下旋流对扩散火焰形状的影响。基本假设是高雷诺数流动和无限速率化学反应。进行了渐近分析,以研究近临界水平的旋流影响燃料/氧化剂混合物质量分数分布的方式。首先表明,可以通过非线性降阶模型来描述速度场相对于柱状态的前导变化。然后,将这些流量变化用于计算由于经典Burke-Schumann火焰结构的旋流引起的校正。在有限的雷诺数和更大的旋涡范围内,广泛的直接数值模拟对渐近结果进行了补充。数值解与雷诺数大时的渐近结果一致。在不释放热量的情况下,采用渐近和数值计算来研究涡旋分解与反应区大小之间的相互作用。研究的第二部分恢复了放热,以描述热膨胀的影响。首先通过小扰动方法来检查弱放热的影响。然后进行计算研究以考虑有序单元放热的影响。渐近研究表明,较弱的放热对流动结构的影响要大得多。同样,随着放热的增加,反应流转变为涡流破坏的临界涡流比也降低。数值结果与极少量热量释放的渐近预测趋势一致。但是,数值较大时,数值结果表明,临界涡流比随放热量的增加而增加。这表明渐近方法仅限于极少量的热量释放。数值计算还表明,当涡流比接近​​涡旋破裂出现的临界水平时,反应区的长度减小,径向扩展,并在管道入口附近变得更加紧凑。

著录项

  • 作者

    Sohn, Kang-Ho.;

  • 作者单位

    Rensselaer Polytechnic Institute.;

  • 授予单位 Rensselaer Polytechnic Institute.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 105 p.
  • 总页数 105
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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