首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Generalized flame surface density transport conditional on flow topologies for turbulent H2-air premixed flames in different regimes of combustion
【24h】

Generalized flame surface density transport conditional on flow topologies for turbulent H2-air premixed flames in different regimes of combustion

机译:广义火焰表面密度传输在不同燃烧制度中湍流H2 - 空气预混火焰流动拓扑的条件

获取原文
获取原文并翻译 | 示例
           

摘要

The generalized flame surface density (FSD) transport conditional on local flow topologies in premixed turbulent flames has been analyzed based on a detailed chemistry direct numerical simulation database of statistically planar turbulent hydrogen-air premixed flames with an equivalence ratio of 0.7 representing the corrugated flamelets, thin reaction zones and broken reaction zones regimes of combustion. The local flow topologies have been categorized by the values of the three invariants of the velocity gradient tensor and the statistical behaviors of the generalized FSD and different terms of its transport equation conditional on these flow topologies have been analyzed in detail for different choices of the reaction progress variable. The qualitative behavior of the different terms of the generalized FSD transport equation has been found to be similar for different choices of reaction progress variable but the statistical behaviors of the tangential strain rate term and its components have been found to be affected by the regime of combustion. The topologies, which exist for all values of dilatation rate, contribute significantly to the generalized FSD transport in premixed turbulent flames for all regimes of combustion. An unstable nodal flow topology, which is representative of a counter-flow configuration, has been found to be a dominant contributor to the FSD transport for all regimes of combustion irrespective of the choice of reaction progress variable. Moreover, a focal topology which is obtained only for positive values of dilatation rate, has been found to contribute significantly, especially to the curvature and propagation terms of the FSD transport equation for all regimes of combustion including the broken reaction zones regime. However, the contributions of the flow topologies to the turbulent transport and tangential strain rate term, which are obtained only for positive dilatation rates, have been found to weaken from the corrugated flamelets to
机译:通过统计平面平面湍流氢气预混火焰的详细化学直接数值模拟数据库分析了预混湍流的局部流体拓扑上的广义火焰表面密度(FSD)传输条件,其等效比为0.7表示瓦楞肉弗拉板,薄的反应区和破碎的反应区燃烧制度。对于不同选择的反应的不同选择,已经分析了局部流梯度张量的三种不变性的值和广义FSD的统计行为和其运输方程条件的不同术语的分类。进度变量。已经发现相互化的FSD传输方程的不同方面的定性行为对于不同的反应进展变量的选择类似,但是切向应变率术语及其组件的统计行为受到燃烧制度的影响。对于所有扩张速率的所有值存在的拓扑,对于所有燃烧制度的预混湍流火焰中的广义FSD运输有显着贡献。已经发现代表反流配置的不稳定节点流体拓扑是对于所有燃烧制度的FSD传输的主要贡献者,而与反应进度变量的选择无关。此外,已经发现仅针对扩张率的正值获得的焦点拓扑显着贡献,特别是对于包括破坏反应区制度的所有燃烧制度的FSD传输方程的曲率和传播术语。然而,已经发现,仅针对阳性扩张率获得的湍流传输和切向应变率术语的贡献已从波纹燧发纸中减弱

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