首页> 外文期刊>Combustion and Flame >Using LES to predict ignition sequences and ignition probability of turbulent two-phase flames
【24h】

Using LES to predict ignition sequences and ignition probability of turbulent two-phase flames

机译:使用LES预测湍流两相火焰的点火顺序和点火概率

获取原文
获取原文并翻译 | 示例
           

摘要

Ignition and altitude reignition are critical issues for aeronautical combustion chambers. The success of the ignition phase of a combustor depends on multiple factors, from the characteristics of the ignitor to the spray droplet size or the level of turbulence at the ignition site. The optimal location of the ignitor or the potential of ignition success of a given energy source are therefore parameters of primary importance in the design and the certification of combustion chambers. To study ignition, series of experiments are usually performed but they are costly especially when multiple spark locations must be tested. For the same reason, current unsteady simulations are useful but do not give reliable results, and require a lot of simulations if different locations are to be tested, which brings the CPU cost to unreasonable values. Alternatives are hence needed and are the objective of this contribution. It is proposed here to derive a local ignition criterion, giving the probability of ignition from the knowledge of instantaneous non-reacting two-phase (air and fuel) flow data. This model is based on criteria for the phases of a successful ignition process, from the first kernel formation to the early flame propagation towards the injector. Comparison with experimental data on an aeronautical chamber shows qualitative agreement, indicating that the proposed ignition criterion, coupled to a Large Eddy Simulation of the stationary evaporating two-phase non-reacting flow, can be used to optimize the ignitor location and power.
机译:点火和高度重燃是航空燃烧室的关键问题。燃烧器点火阶段的成功取决于多种因素,从点火器的特性到喷雾液滴的大小或点火部位的湍流程度。因此,点火器的最佳位置或给定能源的成功点火的可能性是燃烧室设计和认证中最重要的参数。为了研究点火,通常会进行一系列实验,但是它们很昂贵,尤其是当必须测试多个火花位置时。出于同样的原因,当前的不稳定模拟很有用,但不能给出可靠的结果,如果要测试不同的位置,则需要大量的模拟,这会使CPU成本达到不合理的值。因此需要替代品,这是这一贡献的目标。在此建议根据局部的瞬时非反应性两相(空气和燃料)流量数据,得出局部点火标准,从而给出点火的可能性。该模型基于成功点火过程各个阶段的标准,从最初的核形成到火焰向喷射器的早期传播。与航空舱上的实验数据进行比较表明,定性吻合,表明所提出的点火标准与固定蒸发两相非反应性流动的大涡模拟相结合,可用于优化点火器的位置和功率。

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