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Nonlinear evolution of 2D cellular lean hydrogen/air premixed flames with varying initial perturbations in the elevated pressure environment

机译:二维蜂窝贫氢/空气预混合火焰在高压环境中的非线性扰动随初始扰动的变化

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This paper reports on studies of cellular instability of lean hydrogen/air laminar premixed flames with an equivalence ratio of 0.6 at a 5 atm and a 25 atm pressure. Numerical simulations employing a detailed chemical kinetics mechanism and detailed transport properties are carried out to simulate the initial linear growth of instability as well as the nonlinear evolution of flames. At the initial linear growth stage, the amplitude of the initial sinusoidal shaped flame front grows exponentially. Later on, in the nonlinear evolution stage the flame front develops into a cellular surface with wavelengths and amplitudes different from its initial ones. At higher pressures, hydrodynamic instability is enhanced, due to smaller flame thermal thickness; the flame fronts are more chaotic. Chaotic flame fronts are captured during the nonlinear evolution stage and it is shown that the evolution is very sensitive to initial perturbations. Two phenomena in the nonlinear evolution process are observed, mode-lock and preferential choice of modes. Both of these appear in connection with the initial disturbances to the flame front. Sensitivity of the numerical results to numerical schemes and the computational setups is examined. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文报道了在5 atm和25 atm压力下当量比为0.6的稀氢/空气层流预混火焰的细胞不稳定性研究。使用详细的化学动力学机理和详细的传输特性进行了数值模拟,以模拟不稳定性的初始线性增长以及火焰的非线性演化。在初始线性增长阶段,初始正弦形火焰前沿的幅度呈指数增长。后来,在非线性演化阶段,火焰前沿发展成具有不同于初始波长和幅度的细胞表面。在较高的压力下,由于火焰热厚度较小,流体动力学的不稳定性增加。火焰锋更加混乱。在非线性演化阶段捕获了混沌的火焰前沿,结果表明该演化对初始扰动非常敏感。在非线性演化过程中观察到两种现象,锁模和模式的优先选择。两者都与火焰前缘的初始扰动有关。研究了数值结果对数值方案和计算设置的敏感性。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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