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Direct Numerical Simulations of n-Heptane Spray Autoignition in Methane-air Mixtures Relevant to Dual-fuel Engines

机译:与双燃料发动机相关的甲烷-空气混合物中正庚烷喷雾自燃的直接数值模拟

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The ignition behaviour of n-heptane droplets in hot air mixed with methane is studied by means of Direct Numerical Simulations with complex chemistry. The configuration studied is relevant to dual-fuel engines, where methane-air premixed flames are ignited by a pilot injection of liquid fuel, and to multi-fuel turbulent combustion in general. It was found that the presence of methane delayed the autoignition of n-heptane. Because autoignition happens at rich mixture fractions, oxygen is consumed leaving behind unburnt methane that, in practice, could produce unwanted emissions. The methane-air premixed flame is eventually initiated when the reaction zone spreads from the various autoignition sites.
机译:通过具有复杂化学性质的直接数值模拟研究了正庚烷液滴在与甲烷混合的热空气中的着火行为。所研究的配置与双燃料发动机有关,在该发动机中,通过液体燃料的先导喷射点燃甲烷-空气预混火焰,并且通常与多燃料湍流燃烧有关。发现甲烷的存在延迟了正庚烷的自燃。由于自燃发生在富含混合气的部分时,氧气被消耗掉而留下未燃烧的甲烷,实际上,甲烷会产生有害的排放物。当反应区从各个自燃点开始扩散时,甲烷-空气预混火焰最终被引发。

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