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希釈 さ れ た メ タ ン ー 空 気 予熱予混合 気 の 燃 焼特 性

机译:稀释甲烷空气预热预混合气体的燃烧特性

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摘要

Preheating air to high temperatures and dilution of fuel-air mixtures with combustion gases are thought to support high performance combustion, or, in other words, large fuel fluxes and, simultaneously, low emission levels of NO. These combustion characteristics are known to result from complicated interactions between temperature and composition effects, but the mechanisms leading to these characteristics have not yet been elucidated. In this work, combustion of preheated mixtures of methane+air+combustion gases was simulated using a one-dimensional model. In order to analyze separately the temperature and the composition effects, four different values of adiabatic flame temperature Ta were chosen a priori ; then, the preheating temperature was determined as for satisfying Ta for fixed amounts of combustion gases added to the fuel-air mixture. The above cited combustion characterisics could be basically reproduced with the premixed flame model used in this study. Whatever added to the fuel-air mixture, preheating to about 1800 K was seen to be necessary for allowing the mixture to ignite spontaneously and burn efficiently with large burning velocities ; at such high preheating temperature combustion, the burning velocity, and then the fuel flux were found to be very large and the NO concentration much lower than that obtained when methane burns with room temperature air.
机译:将空气预热至高温以及燃料-空气混合物与燃烧气体的稀释可支持高性能燃烧,换句话说,可支持大燃料通量,同时降低NO排放水平。已知这些燃烧特性是由温度和成分效应之间复杂的相互作用所导致的,但是导致这些特性的机理尚未阐明。在这项工作中,使用一维模型模拟了甲烷+空气+燃烧气体的预热混合物的燃烧。为了分别分析温度和组成效应,先验选择了四个不同的绝热火焰温度Ta值;然后,将预热温度确定为满足添加到燃料-空气混合物中的固定数量的燃烧气体的Ta的要求。以上引用的燃烧特性基本上可以用本研究中使用的预混火焰模型来再现。不管添加到燃料-空气混合物中的是什么,都必须预热到1800 K左右,以使混合物自燃并以大的燃烧速度有效燃烧。在如此高的预热温度下燃烧,燃烧速度和燃料通量都非常大,NO浓度远低于甲烷在室温空气中燃烧时的NO浓度。

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