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Effects of Carbon Dioxide on Laminar Burning Speed and Flame Instability of Methane/Air and Propane/Air Mixtures: A Literature Review

机译:二氧化碳对甲烷/空气和丙烷/空气混合物的层流燃烧速度和火焰不稳定性的影响:文献综述

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摘要

This work reviews the impact of carbon dioxide (CO2) on laminar burning speed and stability of the flame for methane (CH4) and propane (C3H8) combustion with air. Mixtures of CH4 and CO2, also known as biogas, are considered as low-cost alternative fuels. Biogas is widely used in various industrial and residential applications. Mixtures of C3H8 and CO2 are considered as alternative refrigerants with low global warming potential and low flammability. Laminar burning speeds were reported using different experimental methods. Laminar burning speeds have also been numerically calculated by one-dimensional steady code using three chemical kinetic mechanisms. Results depict a decrease in equilibrium flame temperature and laminar burning speed of both CH4/air and C3H8/air mixtures with the existence of CO2 in those mixtures. The maximum laminar burning speeds of neat CH4 and C3H8 are observed to be in the vicinity of an equivalence ratio of 1.1; however, as the percentage of CO(2 )increases, the maximum laminar burning speeds shift toward stoichiometric mixtures. Carbon dioxide also increases flame thickness and suppresses flame instability by the combination of thermal-diffusive and hydrodynamic effects.
机译:这项工作回顾了二氧化碳(CO2)对层流燃烧速度以及火焰对甲烷(CH4)和丙烷(C3H8)与空气燃烧的稳定性的影响。 CH4和CO2的混合物(也称为沼气)被认为是低成本的替代燃料。沼气广泛用于各种工业和住宅应用。 C3H8和CO2的混合物被认为是全球升温潜能值低和易燃性低的替代制冷剂。使用不同的实验方法报道了层流燃烧速度。层流燃烧速度也已经使用三种化学动力学机制通过一维稳定代码进行了数值计算。结果表明,CH4 /空气和C3H8 /空气混合物的平衡火焰温度和层流燃烧速度都有所降低,并且这些混合物中存在CO2。观察到纯净的CH4和C3H8的最大层流燃烧速度在1.1的当量比附近;但是,随着CO(2)百分比的增加,最大层流燃烧速度向化学计量混合物转移。二氧化碳还通过增加热扩散效应和流体动力效应来增加火焰厚度并抑制火焰不稳定性。

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