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Specific Heat Ratio of High Methane Fraction Natural Gas/Air in Confined Vessel

机译:密闭容器中高甲烷分数天然气/空气的比热比

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The specific heat ratio used in heat release calculation plays an important role and the mass fraction burned is also a crucial parameter in thermodynamics analysis for engine combustion. A research of high methane fraction natural gas was investigated in a constant volume combustion vessel at different initial conditions. Results show that with the increase of the initial pressure, the specific heat ratio is decreased, and the time of the mixture burned up is postponed, while the peak heat release ratio is increased. With the increase of the methane fraction, the parameters have the opposite behavior. With the increase of the initial temperature, the specific heat ratio is decreased, and the time when the mixture is burned up is accelerated, and the peak heat release ratio has no obviously difference. With the increase of the dilution ratio or the CO_2/N2 ratio, the specific heat ratio is decreased, and the peak heat release heat ratio is decreased. Meanwhile, the time of mixture burned up is postponed with the increase of dilute ratio or CO_2/ N2 ratio.
机译:热释放计算中使用的比热比起到重要作用,并且燃烧的质量级分也是发动机燃烧热力学分析中的关键参数。在不同初始条件下在恒定体积燃烧容器中研究了高甲烷级分天然气的研究。结果表明,随着初始压力的增加,比率降低,并推迟了烧坏的混合物的时间,而峰热释放比率增加。随着甲烷分数的增加,参数具有相反的行为。随着初始温度的增加,比率降低,并且加速了混合物烧坏的时间,并且峰值释放比没有明显差异。随着稀释比或CO_2 / N2比的增加,比率降低,峰值释放热比减小。同时,随着稀释比或CO_2 / N2比率的增加,将混合物燃烧的时间推迟。

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