首页> 外文期刊>Combustion Science and Technology >A Direct Numerical Simulation Investigation of Spherically Expanding Flames Propagating in Fuel Droplet-Mists for Different Droplet Diameters and Overall Equivalence Ratios
【24h】

A Direct Numerical Simulation Investigation of Spherically Expanding Flames Propagating in Fuel Droplet-Mists for Different Droplet Diameters and Overall Equivalence Ratios

机译:不同液滴直径燃料液滴中膨胀的球体扩张火焰的直接数值模拟研究及整个等效比例

获取原文
获取原文并翻译 | 示例
           

摘要

Laminar and turbulent spherically expanding n-heptane flames in mono-sized fuel droplet-mists have been simulated for a range of different overall equivalence ratios and droplet diameters using three-dimensional Direct Numerical Simulations (DNS). Flame wrinkling and the evolutions of flame surface area and burned gas volume have been investigated for spherically expanding spray and gaseous premixed flames with the same initial burned gas radius and overall equivalence ratios. It has been found that droplet-induced wrinkling for laminar flame kernels strengthens with increasing overall equivalence ratio and droplet diameter. However, the effects of droplet-induced flame wrinkling are masked by wrinkling induced by fluid motion in turbulent spherically expanding spray flames. The gaseous phase mixture within the flame has been found to have smaller equivalence ratios (predominantly fuel-lean) in comparison to the overall equivalence ratio for globally stoichiometric and fuel-rich droplet cases and this tendency strengthens with increasing droplet diameter. By contrast, it is possible to obtain higher local equivalence ratio values than the overall equivalence ratio in globally fuel-lean spray flames. The presence of droplets in the globally fuel-lean cases enhances the growth of flame surface area under laminar and turbulent conditions. However, for the laminar globally stoichiometric spray flame, flame surface area for small droplets grows faster than the corresponding laminar premixed flame and this tendency is observed also for turbulent globally fuel-rich spray flames. It has been found that the burned gas mass increases for large (small) droplets for overall fuel-lean (fuel-rich) mixtures for flame propagation in droplet-laden mixtures, which is in qualitative agreement with previous experimental findings.
机译:使用三维直接数值模拟(DNS)模拟了一系列不同的整体等效比和液滴直径的单尺寸燃料液滴雾中的层状和湍流的正面膨胀的正庚烷火焰。已经研究了火焰皱纹和火焰表面区域和燃烧气体的演变,用于球形膨胀,具有相同的初始燃烧气体半径和整体等效比的球形膨胀和气态预热的火焰。已经发现,对于层状火焰核的液滴引起的皱纹随着总体等效率和液滴直径而增强。然而,通过在湍流球形膨胀的喷雾火焰中通过流体运动引起的皱纹掩盖了液滴引起的火焰皱纹的影响。已经发现火焰内的气相混合物具有较小的等效比(主要是燃料稀释),与全球化学计量和富含燃料液滴壳体的整体等效比相比,并且这种趋势随着液滴的增加而增强。相反,可以获得比全球燃料稀薄喷雾火焰中的总体等效比更高的局部等效比值。在全球燃料稀释壳体中的液滴的存在增强了层状和湍流条件下的火焰表面积的生长。然而,对于层流全球化学计量喷雾火焰,用于小液滴的火焰表面区域比相应的层流预混火焰增长得更快,并且该趋势也被观察到湍流全球燃料富含燃料的喷雾火焰。已经发现,对于总体燃料稀释(富含燃料)混合物的总燃料稀(富含燃料)混合物中的大型(小)液滴的燃烧气体质量增加,其液滴 - 升起的混合物中的火焰繁殖,这与先前的实验结果进行了定性协议。

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