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Theoretical analysis of the conical premixed flame response to upstream velocity disturbances considering flame speed development effects

机译:考虑火焰速度发展效应的锥形预混火焰对上游速度扰动响应的理论分析

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The effect of upstream velocity perturbations on the response of a premixed flame was investigated in terms of the flame transfer function dependency on excitation frequency. In this study, the assumption of constant flame speed was extended and the effect of flame speed development was considered; i.e., the flame speed would grow with the time after ignition or with the distance from a flame-holder. In the present study, the kinematics of a conical flame was investigated by linearization of the front tracking equation of flame to uniform and convected fluctuations of the flow velocity and the response was compared with that of a V-shaped flame and the experimental data in the previous studies. The results show that the effect of flame speed development could influence a decreasing gain and increase the phase of the flame response to the uniform velocity oscillations in low and moderate frequencies. Comparing the variations in the gain of flame response upon normalized frequency, show that a conical flame has lower values than the V-flame. In other words, these flames might be less susceptible to combustion instabilities than the V-flames. Furthermore, the variations in phase of the V-flames responses, which show a quasi-linear behavior with normalized frequency, have higher values than the saturated behavior in phase of the conical flame responses. Also, considering that the flame speed development induces an increase in the gain and phase of the conical flame response to the convected velocity oscillations in certain frequencies; because the developed flame front has longer length in comparison to the flame front in constant flame speed model. Therefore, the flame length may be longer than convective wavelength and the heat release would be generated in different points of the flame; consequently the flow oscillations might exert a stronger impact on the unsteady heat release fluctuations.
机译:根据火焰传递函数对激发频率的依赖关系,研究了上游速度扰动对预混火焰响应的影响。在这项研究中,扩展了恒定火焰速度的假设,并考虑了火焰速度发展的影响。即,火焰速度将随着点火后的时间或与火焰保持器的距离而增加。在本研究中,通过将火焰的前部跟踪方程线性化以实现均匀且对流的流速波动,研究了锥形火焰的运动学,并将响应与V形火焰的响应进行了比较,并在实验中对实验数据进行了比较。之前的学习。结果表明,火焰速度发展的影响可能会影响增益的降低,并增加火焰对中低频均匀速度振荡的响应相位。比较归一化频率下火焰响应增益的变化,表明圆锥形火焰的值低于V形火焰。换句话说,与V型火焰相比,这些火焰对燃烧不稳定的影响较小。此外,V火焰响应的相位变化显示出具有归一化频率的准线性行为,其值高于圆锥形火焰响应的相位饱和行为。同样,考虑到火焰速度的发展会引起锥形火焰响应于某些频率下对流速度振荡的增益和相位的增加;因为与恒速模型中的火焰锋相比,发达的火焰锋长度更长。因此,火焰长度可能长于对流波长,并且会在火焰的不同点产生热量释放;因此,流动振荡可能会对不稳定的放热波动产生更大的影响。

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