首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >STUDY OF FUEL COMPOSITION, BURNER MATERIAL AND TIP TEMPERATURE EFFECTS ON FLASHBACK OF ENCLOSED JET FLAME
【24h】

STUDY OF FUEL COMPOSITION, BURNER MATERIAL AND TIP TEMPERATURE EFFECTS ON FLASHBACK OF ENCLOSED JET FLAME

机译:封闭式射流火焰的燃油组成,燃烧器材料和尖端温度效应的研究

获取原文

摘要

Flashback is a key challenge for low NOx premixed combustion of high hydrogen content fuels. Previous work has systematically investigated the impact of fuel composition on flashback propensity, and noted that burner tip temperature played an important role on flashback, yet did not quantify any specific effect. The present work further investigates the coupling of flashback with burner tip temperature and leads to models for flashback propensity as a function of parameters studied. To achieve this, a jet burner configuration with interchangeable burner materials was developed along with automated flashback detection and rim temperature monitoring. An inline heater provides preheated air up to 810 K. Key observations include that for a given condition, tip temperature of a quartz burner at flashback is higher than that of a stainless burner. As a reasult, the flashback propensity of a quartz tube is about double of that of a stainless tube . A polynomial model based on analysis of variance is presented and shows that, if the tip temperature is introduced as a parameter, better correlations result. A physical model is developed and illustates that the critical velocity gradient is proportional to the laminar flame speed computed using the measured tip temperature. Addition of multiple parameters further refined the prediction of the flashback propensity, and the effects of materials are discussed qualitatively using a simple heat transfer analysis.
机译:闪回是高氢含量燃料的低NOx预混燃烧的关键挑战。以前的工作已经系统地调查了燃料组合对闪回倾向的影响,并指出燃烧器尖端温度在闪回上发挥着重要作用,但没有量化任何特定效果。本工作进一步调查了闪回与燃烧器尖端温度的耦合,并导致闪回倾角的模型,因为研究了参数。为此,具有可互换燃烧器材料的喷射燃烧器配置以及自动闪回检测和轮辋温度监测。内联加热器提供高达810 K的预热空气。关键观察包括,对于给定的条件,闪回上的石英燃烧器的尖端温度高于不锈钢燃烧器的尖端温度。作为补充,石英管的闪回倾向是不锈钢管的两倍。提出了一种基于方差分析的多项式模型,并表明,如果将尖端温度被引入参数,则结果更好。开发了物理模型并阐明了临界速度梯度与使用测量的尖端温度计算的层状火焰速度成比例。添加多个参数进一步改进了对倒装倾向的预测,并且使用简单的传热分析定性地讨论了材料的效果。

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