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Experimental observation of pulsating instability under acoustic field in downward-propagating flames at large Lewis number

机译:大型Lewis数向下传播火焰声场下脉动失稳的实验观察

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摘要

According to previous theory, pulsating propagation in a premixed flame only appears when the reduced Lewis number, β(Le-1), is larger than a critical value (Sivashinsky criterion: 4(1 +3) ≈ 11), where β represents the Zel'dovich number (for general premixed flames, β ≈ 10), which requires Lewis number Le > 2.1. However, few experimental observation have been reported because the critical reduced Lewis number for the onset of pulsating instability is beyond what can be reached in experiments. Furthermore, the coupling with the unavoidable hydrodynamic instability limits the observation of pure pulsating instabilities in flames. Here, we describe a novel method to observe the pulsating instability. We utilize a thermoacoustic field caused by interaction between heat release and acoustic pressure fluctuations of the downward-propagating premixed flames in a tube to enhance conductive heat loss at the tube wall and radiative heat loss at the open end of the tube due to extended flame residence time by diminished flame surface area, i.e., flat flame. The thermoacoustic field allowed pure observation of the pulsating motion since the primary acoustic force suppressed the intrinsic hydrodynamic instability resulting from thermal expansion. By employing this method, we have provided new experimental observations of the pulsating instability for premixed flames. The Lewis number (i.e., Le ≈ 1.86) was less than the critical value suggested previously.
机译:,其中β表示:根据以前的理论,在预混火焰脉动传播时减小的路易斯数,β(LE-1),是大于临界值(图4(1 + 3)≈11维平稳状态Sivashinsky标准)放大只出现泽尔多维奇数(一般预混火焰,β≈10),这需要路易斯数勒> 2.1。然而,很少有实验观察已经报道因为脉动不稳定的发生临界减少刘易斯数量是超出了可以在实验中达到。此外,不可避免的流动力不稳定性的耦合限制纯脉动不稳定性在火焰的观察。在这里,我们描述观察脉动不稳定的新方法。我们利用在管中引起的热释放和向下传播的预混火焰的声压波动之间的相互作用,以增强在管壁和辐射热损失在管的开口端的传导热损失热声场由于延长的火焰停留通过减少火焰表面面积,即平焰时间。热声场允许的脉动运动的纯粹的观察,因为初级声力抑制因热膨胀而产生的本征动力学不稳定性。通过采用这种方法,我们已经提供了预混火焰脉动不稳定的新的实验观察。路易斯数目(即,乐≈1.86)小于先前建议的临界值。

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