Experimental Study on the Evolution of Flame Trajectory Line Length for Two Buoyancy-controlled Linear Jet Flames at Different Inclined Angles

Le Chang, Qiang Wang
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Abstract

This paper presents an experimental study of the flame trajectory line length for a buoyancy-controlled dual linear jet flame at different inclined angles (0° ~ 90°). Two nozzles of the same size (80mm*1mm) were used for the experiments, propane was used as the fuel, the range of fuel exit velocity was 0.63 ~ 4.17m/s, the range of burner spacing was 0-0.6m, and a digital camera was used to record the flame morphology. In this paper, a critical spacing Dc is introduced to indicate the change of flame height, and a prediction model of Dc and fuel exit velocity Uf is established to divide the flame trajectory length with spacing into two stages, namely: when SDc, the flame trajectory length does not change significantly with the increase of spacing, and finally approaches to a single free flame trajectory length. When S>Dc, the flame trajectory length did not change significantly with the increase of burner spacing, and finally approached to a single free flame trajectory length, so the flame trajectory length showed a complex non-monotonic evolution. Based on the analysis of the air entrainment, two global models are developed to predict the trajectory lengths of the buoyancy-controlled dual-jet flame system in two states with different initial inclined angles. the model was applied to correlate all the data in this study as well as the data in previous studies.
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两种浮力控制线性射流火焰在不同倾斜角度下火焰轨迹线长演变的实验研究
本文对不同倾斜角度(0°~ 90°)下浮力控制双线射流火焰的火焰轨迹线长进行了实验研究。实验采用两个相同尺寸(80mm*1mm)的喷嘴,以丙烷为燃料,燃料出口速度范围为0.63 ~ 4.17m/s,燃烧器间距范围为0 ~ 0.6m,用数码相机记录火焰形态。本文引入临界间距Dc来表示火焰高度的变化,并建立了Dc与燃料出口速度Uf的预测模型,将随间距变化的火焰轨迹长度分为两个阶段,即当SDc时,火焰轨迹长度随着间距的增加变化不明显,最终趋于单一自由火焰轨迹长度。当S>Dc时,火焰轨迹长度随燃烧器间距的增加变化不明显,最终趋于单一自由火焰轨迹长度,因此火焰轨迹长度呈现出复杂的非单调演化。在对夹带气流进行分析的基础上,建立了两种整体模型来预测两种初始倾角不同状态下浮力控制双射流火焰系统的轨迹长度。运用该模型将本研究的所有数据以及以往研究的数据进行关联。
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