首页> 外文会议>US National Combustion Meeting >Impact of mixture fraction field curvature on chemical species transport in diffusion flames
【24h】

Impact of mixture fraction field curvature on chemical species transport in diffusion flames

机译:混合率场曲率对扩散火焰中化学物种运输的影响

获取原文

摘要

This study investigates the effects of curvature of mixture fraction iso-surfaces on the non-unity Lewis number transport of species in diffusion flames. A general flamelet formulation is derived mathematically for both unity and non-unity Lewis number transport and for different contours of mixture fraction iso-surfaces (i.e. non-zero curvature with varying magnitude.). These theoretical results suggest that curvature does not play a role in the transport process for unity Lewis number irrespective of the flame curvature, which was varied between highly curved and perfectly flat. On the other hand, for non-unity Lewis numbers, a curvature-related term becomes explicit for perfectly spherical flames, and this term acts as a convective term in mixture fraction space. Finally, in cases where flame curvature is not uniform, this convective term induces a non-zero diffusion flux in the direction normal to the mixture fraction gradient, which is inconsistent with the 1D flamelet assumptions. The flamelet equations accounting for curvature effects are solved considering first laminar spherical diffusion flames with different prescribed curvature at the stoichiometric mixture fraction. The results indicate that the magnitude of the curvature-induced convection term can become much larger than that of the convective term in the traditional flamelet formulation. Furthermore, the mass fraction profiles of heavy hydrocarbons, such as PAHs, are shifted significantly by the inclusion of curvature. The current work suggests a possible means to account for curvature effects via a new a priori chemistry tabulation which includes curvature for laminar and mildly turbulent diffusion flames.
机译:本研究探讨上的物种在扩散火焰的非单位路易斯数传输的混合物分数等值面曲率的影响。一般小火焰制剂数学推导两者统一和非统一路易斯数运输和用于混合分数等值面不同轮廓(即非零曲率具有不同大小)。这些理论结果表明,曲率不会在运输过程中发挥作用团结路易斯数,而不管火焰曲率,这是高度弯曲的,并且完全平坦的之间变化的。在另一方面,对于非统一路易斯数,曲率相关的项变为明确为完美的球形火焰,并且该术语用作在混合分数空间中的对流项。最后,在火焰的曲率是不统一的情况下,这种对流项诱导的法线方向混合物分数梯度,这是不符合1D小火焰假设非零扩散通量。小火焰方程占曲率效果都解决了考虑与在化学计量混合物分数不同规定的曲率第一层状球形扩散火焰。结果表明,曲率引起的对流项的大小可以变得比传统的小火焰制剂中的对流项的大得多。此外,重质烃的质量分数曲线,如多环芳烃,被显著通过包含曲率偏移。当前的工作通过一个新的先验化学制表包括用于层和曲率轻度湍流扩散火焰提出了一种可能的手段以考虑曲率的效果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号