...
首页> 外文期刊>Applied Energy >Flame downwash length evolution of non-premixed gaseous fuel jets in cross-flow: Experiments and a new correlation
【24h】

Flame downwash length evolution of non-premixed gaseous fuel jets in cross-flow: Experiments and a new correlation

机译:非预混气体燃料射流在横流中的火焰下降冲洗长度演变:实验和新的相关性

获取原文
获取原文并翻译 | 示例

摘要

Flame downwash behavior (flame pulled by the wake flow and attached to the leeward side of the nozzle) of gaseous fuel jets in cross-flow is of much practical importance in the design of burners as well as industrial flare, and thus important for energy conversion and conservation; however, the studies are still very limited. The critical condition (i.e., critical cross-flow air speed) for flame downwash occurrence as well as the evolution of flame downwash length for various fuel jet exit velocities has not been quantified yet. In this work, the flame downwash length evolution of non-premixed jets for different pipe nozzle diameters at various fuel discharge velocities and cross-flow air speeds as well as the critical condition under which the flame downwash occurs have been quantified comprehensively. Pipe nozzles with inner diameters of 8, 10, 13 and 15 mm were employed in the experiments, using propane as the fuel and with fuel jet velocities ranging between 0.38 and 2.42 m/s. The experimental results showed that the flame downwash length increased with increasing cross-flow air speed for a given fuel jet exit velocity. It was also found that, with increasing cross-flow air speed, the downwash length increased more rapidly for the higher fuel jet exit velocity than that for the lower fuel jet velocity. The critical cross-flow air speed, when flame downwash occurs, was found to be little dependent on the nozzle diameter but increase with the fuel jet exit velocity following a linear relationship. A new correlation for flame down wash length was proposed based on physically the coupling effects due to the competition of the fuel jet momentum to the cross-flow momentum and the total fuel mass supply. The proposed correlation was shown to well characterize the flame downwash length in terms of nozzle inner diameters, dimensionless fuel mass flow rates and the jet momentum ratio. The findings of this work provide basic knowledge and have potential practical applications for burner design and flare implementation, which allow predictions to be made regarding the possible threat and the establishment of the necessary safety length for the stack to prevent the damage for reducing the potential risk. (C) 2017 Published by Elsevier Ltd.
机译:交叉流中的气态燃料射流的火焰下降冲洗行为(被尾流拉动并附着在喷嘴的背风侧)在燃烧器和工业火炬的设计中具有实际意义,因此对于能量转换非常重要和保护;但是,研究仍然非常有限。尚未确定火焰下降冲洗发生的临界条件(即临界横流空气速度)以及火焰下降冲洗长度对于各种燃料射流出口速度的演变。在这项工作中,已经全面量化了在不同的燃料排放速度和横流空气速度下,不同管嘴直径的非预混合射流的火焰下降冲洗长度演变以及发生火焰下降冲洗的临界条件。在实验中使用内径为8、10、13和15毫米的管喷嘴,使用丙烷作为燃料,燃料喷射速度在0.38到2.42 m / s之间。实验结果表明,在给定的燃料射流出口速度下,火焰下降洗涤长度随横流空气速度的增加而增加。还发现,随着横流空气速度的增加,较高的燃油射流出口速度下冲洗长度比较低的燃油射流速度增加得更快。发现当发生火焰下降冲洗时,临界横流空气速度几乎不受喷嘴直径的影响,而是随着燃料射流出口速度的线性关系而增加。根据物理上的耦合效应,由于燃料射流动量与横流动量的竞争以及总燃料质量的供应,提出了一种新的火焰降洗长度相关性。结果表明,所提出的相关性可以很好地表征火焰下冲长度,包括喷嘴内径,无量纲的燃料质量流量和射流动量比。这项工作的发现提供了基础知识,并在燃烧器设计和火炬实施方面具有潜在的实际应用,从而可以对可能的威胁进行预测,并确定烟囱的必要安全长度,以防止损坏以降低潜在风险。 。 (C)2017由Elsevier Ltd.发布

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