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Measurements of the Visible Flame Height of a Swirl-Stabilized Kerosene Jet Diffusion Flame

机译:旋流稳定的煤油射流扩散火焰的可见火焰高度的测量

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An experimental investigation of the structure of a kerosene-based Jet A1 unconfined flame is conducted for different fuel flow rates and momentum flux ratios (MFRs). A pressure swirl atomizer is used to atomize the fuel jet. It is found that the flame height increases with increasing MFR for a fixed fuel flow rate. However, the flame height first decreased and then increased with increasing fuel flow rate for a fixed MFR. A correlation of the flame height with the power level and MFR is developed in a dimensionless form by using the response surface optimal design method. Variations in the lean blowout limit with the fuel flow rate are also studied. The lean blowout limit first increases to a peak value and then subsequently decreases, in agreement with the behavior of the flame height at the lean blowout limit. A blue region at the top of the flame is observed for high fuel flow rates. The flame characteristics obtained in the study are explained with the help of the spray characteristics of the kerosene fuel.
机译:针对不同的燃料流速和动量通量比(MFR),对基于煤油的Jet A1无限制火焰的结构进行了实验研究。压力旋流雾化器用于雾化燃料射流。发现对于固定的燃料流量,火焰高度随着MFR的增加而增加。但是,对于固定的MFR,火焰高度首先下降,然后随着燃料流量的增加而增加。通过使用响应面最佳设计方法,以无量纲形式建立了火焰高度与功率水平和MFR的关系。还研究了稀喷出极限随燃料流量的变化。稀燃吹出极限首先增加到峰值,然后减小,与火焰高度在稀燃吹出极限处的行为一致。对于高燃料流量,观察到火焰顶部的蓝色区域。通过煤油燃料的喷雾特性解释了研究中获得的火焰特性。

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