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NUMERICAL STUDY OF EFFECTS OF THE INTERMEDIATES AND INITIAL CONDITIONS ON FLAME PROPAGATION IN A REAL HOMOGENEOUS CHARGE COMPRESSION IGNITION ENGINE

机译:中间物和初始条件对真实均质装药压缩点火引擎火焰传播影响的数值研究

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摘要

The premixed flame speed under a small four stock homogeneous charge compression ignition engine, fueled with dimethyl ether, was investigated. The effects of intermediate species, initial temperature, initial pressure, exhaust gas recirculation, and equivalence ratio were studied and compared to the baseline condition. Results show that, under all conditions, the flame speeds calculated without intermediates are higher than those which took the intermediates in consideration. Flame speeds increase with the increase of crank angle. The increase rate is divided into three regions and the increase rate is obviously high in the event of low temperature heat release. Initial temperature and pressure only affect the crank angle of flame speed, but have little influence on its value. Equivalence ratio and exhaust gas recirculation ratio do not only distinctly decrease the flame speed, but also advance the crank angle of flame speed.
机译:研究了以二甲醚为燃料的小型四料均质压缩压缩点火发动机下的预混火焰速度。研究了中间物种,初始温度,初始压力,废气再循环和当量比的影响,并将其与基线条件进行了比较。结果表明,在所有条件下,不含中间体的火焰速度均高于考虑了中间体的火焰速度。火焰速度随着曲柄角的增加而增加。增长率被分为三个区域,并且在低温放热的情况下,增长率明显较高。初始温度和压力仅影响火焰速度的曲柄角,但对其值几乎没有影响。当量比和废气再循环比不仅明显降低了火焰速度,而且提高了火焰速度的曲柄角。

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