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首页> 外文期刊>International journal of hydrogen energy >Laminar premixed flame characteristics of hydrogen blended iso-octane-air-nitrogen mixtures
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Laminar premixed flame characteristics of hydrogen blended iso-octane-air-nitrogen mixtures

机译:氢混合异辛烷-空气-氮气混合物的层流预混火焰特性

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摘要

The combined effects of hydrogen addition and nitrogen dilution on laminar flame characteristics for iso-octane-air stoichiometric mixtures were investigated. The spherical expanding flames technique, in a constant volume bomb, was employed. The mole fraction of hydrogen in the iso-octane-hydrogen mixture was varied from 0 to 1 and the mole fraction of nitrogen in the total mixture (iso-octane-hydrogen-air-diluent) from 0 to 0.4. Measurements were performed at an initial pressure of 0.1 MPa and an initial temperature of 300 K. The laminar burning velocity strongly decreases with nitrogen dilution and for all dilution rates increases linearly with hydrogen mass percentage. The burned gas Markstein length is reduced with the increase in hydrogen amount in the mixture until it reaches negative values, the opposite effect of nitrogen dilution. From these new experimental data, an experimental correlation to estimate the laminar burning velocity of iso-octane-hydrogen-air-nitrogen mixtures is proposed. The experimental values of laminar burning velocities are found to be in very good agreement with those predicted by the high temperature mechanism developed by Jerzembeck et al. [1].
机译:研究了异辛烷-空气化学计量混合物的加氢和氮稀释对层流火焰特性的综合影响。在恒定体积的炸弹中采用了球形膨胀火焰技术。异辛烷-氢混合物中氢的摩尔分数从0变化到1,总混合物(异辛烷-氢-空气稀释剂)中氮的摩尔分数从0变化到0.4。在0.1 MPa的初始压力和300 K的初始温度下进行测量。层流燃烧速度随氮气稀释而大大降低,并且所有稀释率均随氢气质量百分比线性增加。燃烧气体的马克斯坦长度随着混合物中氢含量的增加而减小,直到达到负值为止,这与氮稀释相反。从这些新的实验数据中,提出了一种实验相关性,用于估计异辛烷-氢-空气-氮混合物的层流燃烧速度。发现层流燃烧速度的实验值与Jerzembeck等人开发的高温机制所预测的值非常吻合。 [1]。

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