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Numerical Investigation of the Parameter Governing the Ignitability of a Spray Flame

机译:控制喷雾火焰可燃性参数的数值研究

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摘要

This paper contains a numerical examination concerning the ignition behavior of a spray nozzle mounted in a rectangular channel under atmospheric conditions, which is run with Jet A-1. On the basis of a comprehensive data set of experimental results, the numerical approach is verified primarily by means of a comparison of the flame growth and position after ignition. In the following, several distinct igniter positions and boundary condition settings are simulated. The conditions that prevail at the location of the ignition are investigated with respect to how they influence the ignition process. Due to changes in the fuel placement and flow field characteristics, which follow from alternating the boundary conditions, such as air and fuel mass flow, ignition is either promoted or impeded. The underlying causes that can lead to a success or failure of the ignition are analyzed. The ignition in the experiment is achieved through a laser-induced breakdown, which is modeled through a turbulent flame speed closure combustion model with an additional spark ignition extension. A comparison with the ignition statistics from the experiment shows that numerical tools can be used to determine preferential boundary conditions and igniter locations to accomplish a successful ignition in multiphase flow configurations.
机译:本文包含有关安装在大气条件下矩形通道中的喷嘴的点火行为的数值检查,该喷嘴与Jet A-1一起运行。在综合实验结果数据集的基础上,主要通过比较点火后火焰增长和位置来验证数值方法。在下文中,模拟了几种不同的点火器位置和边界条件设置。研究了点火地点的普遍条件如何影响点火过程。由于交替的边界条件(如空气和燃料质量流量)导致燃料放置和流场特性的变化,点火要么被促进,要么被阻碍。分析了可能导致点火成功或失败的根本原因。实验中的点火是通过激光诱导击穿实现的,激光诱导击穿是通过湍流火焰速度闭合燃烧模型建模的,并带有额外的火花点火延伸。与实验中的点火统计数据进行比较表明,数值工具可用于确定优先边界条件和点火器位置,以在多相流配置中成功点火。

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