...
首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Flashback in a Swirl Burner With Cylindrical Premixing Zone
【24h】

Flashback in a Swirl Burner With Cylindrical Premixing Zone

机译:带有圆柱形预混区的旋流燃烧器中的反冲

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Flame flashback from the combustion chamber into the mixing zone is one of the inherent problems of lean premixed combustion and essentially determines the reliability of low NO_X burners. Generally, flashback can be initiated by one of the following four phenomena: flashback due to the conditions in the boundary layer, flashback due to turbulent flame propagation in the core flow, flashback induced by combustion instabilities and flashback caused by combustion induced vortex breakdown. In this study, flashback in a swirling tubular flow was investigated. In order to draw maximum benefit from the tests with respect to the application in gas turbines, the radial distribution of the axial and circumferential momentum in the tube was selected such that the typical character of a flow in mixing zones of premix burners without centerbody was obtained. A single burner test rig has been designed to provoke flashback with the preheating temperature, the equivalence ratio and the mean flow rate being the influencing parameters. The flame position within the mixing section is detected by a special optical flame sensor array, which allows the control of the experiment and furthermore the triggering of the measurement techniques. The burning velocity of the fuel has been varied by using natural gas or hydrogen. The characteristics of the flashback, the unsteady swirling flow during the flame propagation, the flame dynamics and the reaction zones have been investigated by applying high-speed video recordings, the laser Doppler anemometry and the laser induced fluorescence. The presented results show that a combustion induced vortex breakdown is the dominating mechanism of the observed flashback. This mechanism is very sensitive to the momentum distribution in the vortex core. By adding axial momentum around the mixing tube axis, the circumferential velocity gradient is reduced and flashback can be prevented.
机译:从燃烧室到混合区的火焰回火是稀薄的预混燃烧固有的问题之一,并从根本上决定了低NO_X燃烧器的可靠性。通常,回火可以由以下四种现象之一引发:边界层条件引起的回火,岩心流中湍流火焰传播引起的回火,燃烧不稳定性引起的回火以及燃烧引起的涡旋破坏引起的回火。在这项研究中,研究了回旋管流中的回火。为了从测试中获得最大的收益,选择了燃气轮机中轴向和周向动量的径向分布,以便获得不带中心体的预混燃烧器混合区中流动的典型特征。 。设计了一个单燃烧器试验台,以预热温度引起回火,当量比和平均流速是影响参数。混合部分内的火焰位置由特殊的光学火焰传感器阵列检测,从而可以控制实验并触发测量技术。通过使用天然气或氢气已经改变了燃料的燃烧速度。通过应用高速视频记录,激光多普勒风速计和激光诱导的荧光,研究了回火特性,火焰传播过程中的不稳定涡流,火焰动力学和反应区。提出的结果表明,燃烧引起的涡旋破坏是所观察到的回火的主要机制。该机制对涡旋核心中的动量分布非常敏感。通过增加围绕混合管轴线的轴向动量,可以减小圆周速度梯度并可以防止回火。

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