首页> 外文会议>ASME(American Society of Mechanical Engineers) Power Conference; 20040330-20040401; Baltimore,MD; US >EFFECT OF SWIRL AND FUEL PULSATION ON FLOW DYNAMICS, FLAME STRUCTURE AND DROPLET MOTION IN SWIRL-STABILIZED SPRAY FLAMES
【24h】

EFFECT OF SWIRL AND FUEL PULSATION ON FLOW DYNAMICS, FLAME STRUCTURE AND DROPLET MOTION IN SWIRL-STABILIZED SPRAY FLAMES

机译:旋流和燃油脉动对稳定旋流火焰的动力学,火焰结构和液滴运动的影响

获取原文
获取原文并翻译 | 示例

摘要

This paper describes an experimental investigation of the role of swirl distribution in a co-annular swirl-stabilized spray combustor for passive control of flame structure using kerosene fuel. Three distinctly different flames have been examined. A low shear, a high shear, and a counter-rotating swirling flow flame have been examined. The droplet dynamics and flowfield associated with the low and high shear co-rotating swirl configurations under isothermal and combustion conditions have been examined using a phase Doppler interferometric techniques. The high-shear swirl configuration was found to decrease droplet diameter in the shear region, indicating secondary atomization of larger size droplets due to strong shear effects in the flow. Droplet mean and turbulence characteristics were obtained. In order to simulate oscillations in the flow pulsations were introduced into the fuel flow in order to excite instabilities in the burner. The role of swirl distribution was determined on the attenuation of this imposed instability. Swirl distribution was found to be effective in reducing the instability. Instabilities at the forcing and harmonic frequencies are found to be up to 5 dB more powerful in the counter-rotating flow, demonstrating the role of swirl on flame structure and the associated combustion instability in swirl-stabilized spray combustors. The airflow distribution in the burner was also found to play an important role on the alleviation of combustion instability.
机译:本文介绍了一种实验研究,该实验研究了旋流分布在共环形旋流稳定的喷雾燃烧器中的作用,该燃烧器用于被动控制煤油燃料的火焰结构。已经检查了三种截然不同的火焰。研究了低剪切,高剪切和反向旋转的旋流火焰。使用相位多普勒干涉技术,已经研究了等温和燃烧条件下与低剪切和高剪切同向旋转旋流构型相关的液滴动力学和流场。发现高剪切旋流构造减小了剪切区域中的液滴直径,这表明由于流动中的强烈剪切效应,较大尺寸的液滴发生了二次雾化。获得了液滴的均值和湍流特性。为了模拟流动中的振荡,将脉动引入燃料流中,以激发燃烧器中的不稳定性。旋流分布的作用取决于这种不稳定性的减弱程度。发现漩涡分布对于减少不稳定性是有效的。在反向旋转流中,强迫和谐波频率的不稳定性最高可提高5 dB,这证明了旋流对火焰结构的作用以及与之相关的稳定旋流喷雾燃烧器的燃烧不稳定性。还发现燃烧器中的气流分布在减轻燃烧不稳定性方面起着重要作用。

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