首页> 外文会议>ASME Turbo Expo: Turbomachinery Technical Conference and Exposition >NUMERICAL INVESTIGATION OF INLET TURBULENCE INTENSITY EFFECT ON A BLUFF-BODY STABILIZED FLAME AT NEAR FLAME BLOW-OFF CONDITIONS
【24h】

NUMERICAL INVESTIGATION OF INLET TURBULENCE INTENSITY EFFECT ON A BLUFF-BODY STABILIZED FLAME AT NEAR FLAME BLOW-OFF CONDITIONS

机译:在近火焰吹出条件下凹槽稳定火焰对凹槽湍流效应的数值研究

获取原文

摘要

This paper investigates the effects of the inlet turbulence intensity (ITI) on the dynamics of a bluff-body stabilized flame operating very close to its blow-off condition. This work is motivated by the understanding that more stringent regulations on combustion-generated emission have forced the industry to design combustion systems that operate at very fuel-lean conditions. Combustion at very lean conditions, however, induces flame instability that can ultimately lead to flame extinction. The dynamics of the flame at lean conditions can therefore be very sensitive to boundary conditions. Here, a numerical investigation is conducted using Large Eddy Simulation method to understand the flame sensitivity to inlet turbulence intensity. Combustion is accounted for through the transport of chemical species. The sensitivity to inlet turbulence is assessed by carrying out simulations in which the inlet turbulence is varied in increments of 5%. It is observed that while the inlet intensity of 5% causes blow-off, further increased to 10% preserves a healthy flame on account of greater heat release arising from greater and balanced entrainment of combustible mixtures into the flame zone just behind the bluff-body. This balanced stabilization is again lost as the inlet turbulence intensity is further increased to 15%. Since experimental data pertaining to the topic of this paper are rare, the reasonableness of the combination of models is first checked by validating Volvo propane bluff-body flame, whereby reasonable agreement is observed. This study will advance our understanding of the sensitivity of bluff-body flames to boundary conditions specifically to the inlet turbulent boundary condition at near critical blow-off flame conditions.
机译:本文调查了入口湍流强度(ITI)对稳定稳定火焰的动态的影响,非常接近其吹扫条件。这项工作是通过了解,了解对燃烧产生的排放的更严格规定迫使该行业设计在非常燃料贫民条件下运行的燃烧系统。然而,在非常贫条件下燃烧诱导火焰不稳定性,最终可能导致火焰灭绝。因此,贫气体的火焰动态对边界条件非常敏感。这里,使用大涡模拟方法进行数值研究,以了解对入口湍流强度的火焰敏感性。通过化学物质的运输核算燃烧。通过进行仿真来评估对入口湍流的敏感性,其中入口湍流以5%的增量变化。观察到,虽然入口强度为5%导致吹扫,但进一步增加到10%,因为较大和平衡夹带的易燃混合物引起的易燃混合物的更大和平衡夹带到凹槽的火焰区,而进一步增加到10% 。随着入口湍流强度进一步增加到15%,这种平衡的稳定性再次丢失。由于与本文主题有关的实验数据很少,因此首先通过验证沃尔沃丙烷诈唬体火焰来检查模型组合的合理性,从而观察到合理的协议。该研究将推进我们对凹槽 - 体火焰对边界条件的敏感性的理解,具体于近期临界吹扫火焰条件的入口湍流边界条件。

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