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Shock-tube measurements of carbon to oxygen atom ratios for incipient soot formation with C2H2, C2H4 and C2H6 fuels

机译:用C2H2,C2H4和C2H6燃料形成碳黑时碳-氧原子比的冲击管测量

摘要

The critical atomic carbon to oxygen ratios, Phi sub C, for incipient soot formation in shock heated acetylene, ethylene, ethane/oxygen/ argon mixtures was measured over the temperature range 2000 K to 2500 K for reactant partial pressures between 0.1 and 0.4 atoms. Absorption of light from a He-Ne laser at 6328A was was used to detect soot. It was observed that the values of Phi sub C for all three fuels increased uniformly with temperature such that at the highest temperatures Phi sub C was considerably greater than unity, i.e. greater than the value of about unity at which solid carbon should have been precipitated on a thermochemical equilibrium basis. Observations were made over periods extending up to about one millisecond, which was well in excess of the time required for the major heat release of the combustion reactions. The relevance of these experimental findings to the problem of soot formation in gas turbine combustion chambers is discussed.
机译:在2000 K至2500 K的温度范围内,对于反应物分压为0.1到0.4的原子,测量了在冲击加热的乙炔,乙烯,乙烷/氧气/氩气混合物中初生烟灰形成的关键原子碳氧比Phi subC。用He-Ne激光器在6328A处吸收的光检测烟灰。观察到,所有三种燃料的Phi sub C值均随温度均匀增加,因此在最高温度下,Phi sub C显着大于1,即大于应将固体碳沉淀在其上的约1的值。热化学平衡基础。在长达约一毫秒的时间内进行了观察,这远远超过了燃烧反应主要热量释放所需的时间。讨论了这些实验结果与燃气轮机燃烧室中烟尘形成问题的相关性。

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