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Flammability conditions for ultra-lean hydrogen premixedudcombustion based on flame-ball analyses

机译:超稀氢气预混物的可燃性条件基于火焰球分析的燃烧

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摘要

It has been reasoned that the structures of strongly cellular flames in very lean mixtures approach an array of flame balls, each burning as if it were isolated, thereby indicating a connection between the critical conditions required for existence of steady flame balls andudthose necessary for occurrence of self-sustained premixed combustion. This is the starting assumption of the present study, in which structures of near-limit steady sphericosym-metrical flame balls are investigated with the objective of providing analytic expressions for critical combustion conditions in ultra-lean hydrogen-oxygen mixtures diluted with N2 and water vapor. If attention were restricted to planar premixed flames, then the lean-limit moleudfraction of H2 would be found to be roughly ten percent, more than twice the observed flammability limits, thereby emphasizing the relevance of the flame-ball phenomena.udNumerical integrations using detailed models for chemistry and radiation show that a onestep chemical-kinetic reduced mechanism based on steady-state assumptions for alludchemical intermediates, together with a simple, optically thin approximation for water-vapor radiation, can be used to compute near-limit fuel-lean flame balls with excellent accuracy. The previously developed one-step reaction rate includes a crossover temperature that determines in the first approximation a chemical-kinetic lean limit below which combustión cannot occur, with critical conditions achieved when the diffusion-controlled radiation-freeudpeak temperature, computed with account taken of hydrogen Soret diffusion, is equal to the crossover temperature. First-order corrections are found by activation-energy asymptotics in a solution that involves a near-field radiation-free zone surrounding a spherical flame sheet,udtogether with a far-field radiation-conduction balance for the temperature profile. Different scalings are found depending on whether or not the surrounding atmosphere contains wáter vapor, leading to different analytic expressions for the critical conditions for flame-balludexistence, which give results in very good agreement with those obtained by detailed numerical computations.
机译:有理由认为,在非常稀薄的混合物中,强蜂窝状火焰的结构接近一系列的火焰球,每个火焰都好像被隔离了一样燃烧,从而表明存在稳定的火焰球所需的关键条件与为稳定火焰球所必需的其他条件之间存在联系。自持式预混燃烧的发生。这是本研究的起始假设,在该研究中,研究了近极限稳态球对称火焰球的结构,目的是为用N2和水蒸气稀释的超稀氢-氧气混合物中的关键燃烧条件提供解析表达式。 。如果将注意力集中在平面预混火焰上,则发现H2的稀薄极限摩尔分数约为10%,是观察到的可燃极限的两倍以上,从而强调了火焰球现象的相关性。使用详细的化学和辐射模型表明,基于所有化学中间体的稳态假设的一步化学动力学还原机理,以及对水蒸气辐射的简单的光学薄近似,可用于计算近极限燃油稀薄的火焰球,精度极高。先前开发的一步反应速率包括一个交叉温度,该交叉温度在第一近似值中确定了化学动力学的贫油极限,在该极限下不能发生燃烧,并且在考虑到扩散控制的无辐射 udpeak温度的情况下达到了临界条件氢的Soret扩散系数等于交叉温度。一阶校正可通过溶液中的活化能渐近线找到,该解决方案包括围绕球形火焰片的近场无辐射区,以及温度分布的远场辐射传导平衡。根据周围的大气层是否包含水蒸气,会发现不同的比例,从而导致火焰球不存在的临界条件的解析表达式不同,这与通过详细数值计算获得的结果非常吻合。

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