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Experimental observations on the influence of hydrogen atoms diffusion on laminar and turbulent premixed burning velocities

机译:氢原子扩散对层流和湍流预混燃烧速度影响的实验观察

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摘要

Measurements of the laminar and turbulent burning velocity of premixed hydrogen–air, n-hexane–air and n-octane–air flames were made and compared to corresponding measurements of deuterium–air, n-hexane-d14–air and n-octane-d18–air flames performed at identical initial conditions. Experiments were conducted in a constant volume, optically accessed vessel, at elevated initial pressure and temperature of 0.5 MPa and 360 K, for a range of equivalence ratios. Burn rate data was determined via schlieren imaging of flames. It was found that the isotope effect accounted for an average reduction of 20% in the laminar burn rate of alkanes. Similarly, deuterium was measured to burn around 30% slower than hydrogen at the range of equivalence ratios explored. The isotope effect on burn rate was significantly reduced under turbulence. The difference between the turbulent burn rates of the deuterated alkanes and their normal alkane counterparts were measured to be approximately 10%. The difference between the turbulent burn rates of deuterium and hydrogen was even smaller. Nonetheless, the laminar burn rate ranking was maintained under turbulence for all fuels and conditions explored, thus suggesting a degree of influence of radical transport and chemistry under turbulent burning.
机译:测量了预混合氢气-空气,正己烷-空气和正辛烷-空气火焰的层流和湍流燃烧速度,并将其与氘-空气,正己烷-d14-空气和正辛烷-空气的相应测量值进行了比较。 d18 –空气火焰在相同的初始条件下进行。在一定的当量比范围内,在恒定体积,光学访问的容器中,在升高的初始压力和0.5 MPa和360 K的温度下进行实验。燃烧速率数据通过火焰的纹影成像来确定。已经发现,同位素效应使烷烃的层流燃烧率平均降低了20%。同样,在所研究的当量比范围内,氘的燃烧速度比氢气慢30%。在湍流下,同位素对燃烧速率的影响显着降低。氘代烷烃与普通烷烃的湍流燃烧速率之间的差异经测量约为10%。氘和氢的湍流燃烧速率之间的差异甚至更小。尽管如此,对于所有探索的燃料和条件,在湍流下均保持层流燃烧速率等级,因此表明湍流燃烧下自由基运输和化学的影响程度。

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