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Acoustic near-field characteristics of a conical, premixed flame

机译:锥形预混火焰的声场特性

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The occurrence of self-excited pressure oscillations routinely plagues the development of combustion systems. These oscillations are often driven by interactions between the flame and acoustic perturbations. This study was performed to characterize the structure of the acoustic field in the near field of the flame and the manner in which it is influenced by oscillation frequency, combustor geometry, flame length and temperature ratio. The results of these calculations indicate that the acoustic velocity has primarily one- and two-dimensional features near the flame tip and base, respectively. The magnitude of the radial velocity components increases with temperature ratio across the flame, while their axial extent increases with frequency. however, the acoustic pressure has primarily one-dimensional characteristics. They also show that the acoustic field structure exhibits only moderate dependencies upon area expansion and flame temperature ratio for values typical of practical systems. Finally, they show that the local characteristics of the acoustic field, as well as the overall plane-wave reflection coefficient, exhibit a decreasing dependence upon the flame length as the area expansion ratio increases.
机译:自激式压力振荡的出现通常困扰着燃烧系统的发展。这些振荡通常是由火焰和声扰动之间的相互作用驱动的。进行这项研究是为了表征火焰近场中的声场结构,以及其受振荡频率,燃烧室几何形状,火焰长度和温度比的影响方式。这些计算的结果表明,声速分别在火焰尖端和火焰底部附近主要具有一维和二维特征。径向速度分量的大小随火焰中的温度比而增加,而其轴向范围随频率而增加。然而,声压主要具有一维特性。他们还表明,对于实际系统的典型值,声场结构仅表现出对面积扩展和火焰温度比的中等依赖性。最后,他们表明,随着面积膨胀率的增加,声场的局部特性以及整个平面波反射系数对火焰长度的依赖性降低。

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