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STUDIES ON THE OUTWARDLY AND INWARDLY PROPAGATING SPHERICAL FLAMES WITH RADIATIVE LOSS

机译:径向向内向外扩散的球形火焰的研究

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Outwardly and inwardly propagating spherical flames (OPF and IPF) with radiative loss are studied analytically and numerically. Emphasis is placed on investigating the effects of radiation on flame propagating speed, Markstein length, and flame extinction, as well as on examining whether the reactant can be completely consumed via an IPF. A general correlation between flame propagating speed and flame radius for OPF and IPF of large flame radii is derived and utilized to study the effects of radiative loss and Lewis number on flame propagation and extinction. A correlation for Markstein length at different Lewis numbers and radiative loss is also presented. It is shown that the Markstein length is strongly affected by radiative loss as well as Lewis number, and that only for mixtures not close to their flammabitity limits and without CO_2 dilution is the effect of radiation on the Markstein length measured from expanding spherical flames negligible. Furthermore, the theoretical results are validated by numerical simulations. It is found that when radiative loss is considered, there exists unconsumed reactant after the extinction of IPF for mixture with Lewis number less than unity.
机译:对具有辐射损耗的向外和向内传播的球形火焰(OPF和IPF)进行了分析和数值研究。重点放在研究辐射对火焰传播速度,马克斯坦长度和火焰熄灭的影响,以及检查反应物是否可以通过IPF完全消耗掉。推导了大火焰半径的OPF和IPF的火焰传播速度与火焰半径之间的一般关系,并用于研究辐射损耗和Lewis数对火焰传播和消光的影响。还给出了在不同路易斯数和辐射损耗下马克斯坦长度的相关性。结果表明,马克斯坦长度受辐射损失以及路易斯数的强烈影响,只有对于不接近其燃度极限且未稀释CO_2的混合物,辐射对马克斯坦长度的影响可以通过膨胀球形火焰测得而忽略不计。此外,理论结果得到了数值模拟的验证。发现当考虑辐射损失时,对于路易斯数小于1的混合物,在IPF消光后存在未消耗的反应物。

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