首页> 外文期刊>Physical review, E >Interplay of Darrieus-Landau instability and weak turbulence in premixed flame propagation
【24h】

Interplay of Darrieus-Landau instability and weak turbulence in premixed flame propagation

机译:在预混火焰传播中,Darrieus-Landau不稳定性和弱湍流之间的相互作用

获取原文
获取原文并翻译 | 示例
           

摘要

In this study we investigate, both numerically and experimentally, the interplay between the intrinsic Darrieus-Landau (DL) or hydrodynamic instability of a premixed flame and the moderately turbulent flow field in which the flame propagates. The objective is threefold: to establish, unambiguously, through a suitably defined marker, the presence or absence of DL-induced effects on the turbulent flame, to quantify the DL effects on the flame propagation and morphology and, finally, to asses whether such effects are mitigated or suppressed as the turbulence intensity is increased. The numerical simulations are based on a deficient reactant model which lends itself to a wealth of results from asymptotic theory, such as the determination of stability limits. The skewness of the flame curvature probability density function is identified as an unambiguous morphological marker for the presence or absence of DL effects in a turbulent environment. In addition, the turbulent propagation speed is shown to exhibit a distinct dual behavior whereby it is noticeably enhanced in the presence of DL instability while it is unchanged otherwise. Furthermore, increasing the turbulence intensity is found to be mitigating with respect to DL-induced effects such as the mentioned dual behavior which disappears at higher intensities. Experimental propane and/or air Bunsen flames are also investigated, utilizing two distinct diameters, respectively, above and below the estimated DL cutoff wavelength. Curvature skewness is still clearly observed to act as a marker for DL instability while the turbulent propagation speed is concurrently enhanced in the presence of the instability.
机译:在这项研究中,我们在数值和实验上都研究了预混火焰的固有达里厄斯-兰道(DL)或流体动力不稳定性与火焰在其中传播的中度湍流场之间的相互作用。其目标是三方面的:通过适当定义的标记明确地确定是否存在由DL引起的对湍流火焰的影响,以量化DL对火焰传播和形态的影响,最后评估这种影响是否随着湍流强度的增加,β被抑制或抑制。数值模拟是基于一种不足的反应物模型进行的,该模型使自己能够从渐近理论中获得大量结果,例如确定稳定性极限。火焰曲率概率密度函数的偏斜被确定为在湍流环境中是否存在DL效应的明确形态标记。另外,湍流传播速度显示出独特的双重特性,从而在存在DL不稳定性的情况下湍流传播速度显着增强,而在其他情况下则保持不变。此外,发现湍流强度相对于DL诱导的效应(例如在较高强度下消失的上述双重行为)得到缓解。还分别利用估计的DL截止波长之上和之下的两个不同直径研究了丙烷和/或空气本生火焰。仍然清楚地观察到曲率偏斜充当DL不稳定性的标记,同时在不稳定性存在的情况下同时提高了湍流传播速度。

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