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INVESTIGATION OF FUEL-AIR MIXING IN A MICRO-FLAMEHOLDER FOR MICRO-POWER AND SCRAMJET APPLICATIONS

机译:用于微功率和渣油喷射器的微火焰保持器中的燃料与空气混合的研究

摘要

This thesis presents a first principles model of the fuel-air mixing process in a micro-flameholder. This model is used to identify key design parameters involved in fuel-air mixing and to characterize how mixing performance scales with the Reynolds number. The results of this analysis show that fuel-air mixing in micro-flameholders occurs primarily at low Reynolds numbers (1Re5x103) traditionally associated with the laminar to transitional flow regime. Mixing lengths in micro-flameholders based solely on molecular diffusion are also predicted using a modified Burke-Schumann model. The predicted mixing lengths indicate that less distance is required for fuel-air mixing as micro-flameholders get smaller. Axisymmetric CFD simulations are performed to validate the predictions of the Burke-Schumann model, and to investigate the importance of axial diffusion and viscous effects. The results of these simulations suggest that viscous shear at the wall and at the fuel-air interface can significantly impact mixing lengths in micro-flameholders.
机译:本文提出了微火焰保持器中燃料-空气混合过程的第一原理模型。该模型用于识别燃料-空气混合中涉及的关键设计参数,并表征混合性能如何随雷诺数扩展。该分析的结果表明,微火焰架中的燃料-空气混合主要在传统上与层流到过渡流态相关的低雷诺数(1

著录项

  • 作者

    Dellimore Kiran Hamilton;

  • 作者单位
  • 年度 2005
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
  • 中图分类

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