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Numerical investigation on spray self-pulsation characteristics of a liquid-centered swirl coaxial injector

机译:圆形旋流同轴注射器喷射自脉冲特性的数值研究

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Self-pulsation characteristics of a liquid-centered swirl coaxial (LCSC) injector are investigated numerically based on the coupled volume of fluid VOF and Level Set (CLSVOF) model. Good agreements of simulation results and experiment data, in aspect for self-pulsation frequency and spray angle, are generally achieved. On the basis of the flow dynamics of the injector, mechanism of spay self-pulsation in recessed LCSC injector is proposed. The self-pulsation arises from the periodic blocking of annular gas by the liquid sheet. Self-pulsated "Christmas tree" spray patterns result from the periodic vortex rings generating and shedding around the liquid sheet. Theoretical analysis demonstrates that the self-pulsation frequency is almost the same as the frequency of the liquid sheet impacting the recess chamber wall, and the model may be able to predict the self-pulsation frequency. Pressure oscillation inside the air-core is closely related to the primary breakup of the liquid sheet, and the frequency is consistent with the self-pulsation frequency. Effects of the gas-liquid mass flow rate ratio (GLR) on the self-pulsation frequency and pressure oscillation frequency inside the air-core are negligible. The self-pulsation intensity peaks under conditions with the critical mixing flow pattern, while, the pressure oscillation intensity inside the air-core increases with the elevating of GLR. It seems that the spray self-pulsation could improve the spray angle. (C) 2021 Elsevier Masson SAS. All rights reserved.
机译:基于耦合的流体VOF和水平集(CLSVOF)模型,在数值上研究了液体旋转涡流(LCSC)喷射器的自脉冲特性。通常达到仿真结果和实验数据的良好协议,在自我脉动频率和喷射角度方面都是达到的。基于喷射器的流动动力学,提出了凹陷LCSC喷射器中的喷涂自脉冲机理。自脉冲产生由液体片的环形气体的周期性阻断。自脉冲“圣诞树”喷雾模式由周期性涡旋环产生和围绕液体片脱落。理论分析表明,自脉动频率几乎与冲击凹陷室壁的液体片的频率,并且模型可以能够预测自脉冲频率。空气芯内的压力振荡与液体片的初级分解密切相关,频率与自脉动频率一致。气液质量流量比(GLR)对空心脉冲内自脉冲频率和压力振荡频率的影响可忽略不计。自脉冲强度在具有临界混合流动模式的条件下的峰值峰值,而在气核内部的压力振荡强度随着GLR的提升而增加。似乎喷涂自脉冲可以改善喷射角度。 (c)2021 Elsevier Masson SAS。版权所有。

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