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REDUCED CHEMICAL KINETIC MODEL FOR THE IGNITION DELAY OF HYDROCARBON FUELS AND DME

机译:降低了燃油和二甲醚点火延迟的化学动力学模型

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摘要

A reduced chemical kinetic model that consists of 19 reactions and 17 species was derived to apply an autoignition model of hydrocarbon fuels. Given the initial fuel -air mixture concentration, temperature, and pressure, the present model was used to predict temperature, pressure, and species concentrations as a function of time. The model was validated with the experimental data where the ignition delays of several hydrocarbon fuels were measured alongside varying equivalence ratios and initial pressures. In particular, changing the rate coefficients of the two reactions in the present model explained the effects of different fuels on ignition delays. As a result, the proposed model is applicable to the autoignition models of various alkane hydrocarbon fuels with different chemical structures, such as n-heptane, iso-octane, n-decane, and an alternative fuel of DME (dimethyl ether), and can simulate high-temperature autoignition of diesel combustion.
机译:推导了由19种反应和17种物质组成的简化化学动力学模型,以应用烃类燃料的自燃模型。给定初始燃料-空气混合物的浓度,温度和压力,本模型用于预测温度,压力和物质浓度随时间的变化。该模型已通过实验数据进行了验证,其中测量了几种碳氢化合物燃料的点火延迟以及不同的当量比和初始压力。特别地,在本模型中改变两个反应的速率系数可以解释不同燃料对点火延迟的影响。结果,所提出的模型适用于具有不同化学结构的各种烷烃燃料的自燃模型,例如正庚烷,异辛烷,正癸烷和DME(二甲醚)的替代燃料,并且可以模拟柴油燃烧的高温自燃。

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