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Improved Flamelet Modeling of Supersonic Combustion

机译:超声速燃烧的改进小火焰建模

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摘要

This paper has the objective of addressing a few basic issues pertaining to the use of the laminar flamelet method to model turbulence-combustion interactions in supersonic combustion. Specifically, this paper documents the way in which the use of Troe's pressure-reaction-rate model affects the laminar flame solutions that are used in the generation of the flamelet library for supersonic combustion. For the opposed-jet model of nonpremixed flames, this study also investigates how the laminar-flamelet results obtained using the flamelet equations differ from those obtained from the canonical equations for opposed-jet flame (OJF). The differential results obtained for supersonic combustion predictions in two models of the scramjet isolator/combustor when pressure, in several formulations, is included as an independent variable of the flamelet table are also presented. Lastly, this study investigates the manner in which the use of various interpolations of the reaction progress variable from the S-curve affects turbulent supersonic combustion results. The overall goal of the various studies is to provide an improved flamelet modeling of supersonic combustion. Simulations based on linear progress variable interpolation coupled with the seven-level pressure field in the base flamelet library, using the OJF equations, appear to yield the best results.
机译:本文的目的是解决与层流小火焰方法的使用有关的一些基本问题,以模拟超音速燃烧中的湍流-燃烧相互作用。具体而言,本文记录了Troe压力反应速率模型的使用如何影响层流火焰解决方案的方法,层流火焰解决方案用于生成超音速燃烧的小火焰库。对于非预混火焰的对置射流模型,本研究还研究了使用小火焰方程获得的层流-小火焰结果与对置射流火焰(OJF)的规范方程获得的结果之间的差异。还介绍了当两个公式中的压力作为小火焰表的自变量包括在内时,在超燃冲压式隔离器/燃烧器的两个模型中针对超音速燃烧预测获得的差分结果。最后,本研究调查了从S曲线使用反应进度变量的各种插值影响湍流超音速燃烧结果的方式。各种研究的总体目标是提供一种改进的超声速燃烧小火焰建模。使用OJF方程,基于线性进度变量插值与基础小火焰库中的七级压力场进行的模拟似乎产生了最佳结果。

著录项

  • 来源
    《Journal of propulsion and power》 |2018年第3期|750-761|共12页
  • 作者

    Foluso Ladeinde; Zhipeng Lou;

  • 作者单位

    Stony Brook University, Stony Brook, New York 11794;

    Stony Brook University, Stony Brook, New York 11794;

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  • 正文语种 eng
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