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Two-dimensional direct numerical simulation of spray flames – Part 2: Effects of ambient pressure and lift, and validity of flamelet model

机译:喷雾火焰的二维直接数值模拟–第2部分:环境压力和升力的影响以及小火焰模型的有效性

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摘要

The effect of ambient pressure on spray flames is investigated by means of two-dimensional direct numerical simulation (DNS), and the validity of an extended flamelet/progress-variable approach (EFPV) is examined under the high-pressure condition. The DNS is performed not only for a simple jet spray flame with a pilot burner but also for a lifted recirculation spray flame without any pilot burner at ambient pressures of 0.1 and 0.5 MPa. n-decane (C[10]H[22]) is used as liquid spray fuel, and the evaporating droplets’ motions are tracked by the Lagrangian method. The results show that the behaviors of jet and lifted recirculation spray flames are strongly affected by ambient pressure. The effects of the change of the ambient pressure on these spray flame behaviors can be well captured by EFPV and EFPV coupled with G-equation model (EFPV-G), respectively.
机译:通过二维直接数值模拟(DNS)研究了环境压力对喷雾火焰的影响,并在高压条件下研究了扩展的小火焰/渐进变量方法(EFPV)的有效性。 DNS不仅适用于带有引燃器的简单喷射火焰,而且还适用于在0.1和0.5 MPa的环境压力下没有任何引燃器的提升的再循环喷雾火焰。正癸烷(C [10] H [22])用作液体喷雾燃料,通过拉格朗日方法跟踪蒸发液滴的运动。结果表明,射流和升起的再循环喷雾火焰的行为受环境压力的强烈影响。 EFPV和EFPV结合G方程模型(EFPV-G)可以很好地捕获环境压力变化对这些喷雾火焰行为的影响。

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