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Effect of injection conditions on mixing performance of pintle injector for liquid rocket engines

机译:喷射条件对液体火箭发动机枢轴喷射器混合性能的影响

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A movable pintle injector provides an effective throttling and high combustion stability in liquid rocket engines for performing space maneuvers safely. It has a movable pintle rod that causes a variable injection area. The mass flow of simulant and pintle opening affect the mixing performance of propellants, which is concerned in this paper. Therefore, the mixing performance is studied by the effect of mass flow rate of liquid, gas and pintle opening distance. The liquid is ejected radially from a center gap to form a thin liquid sheet which is broken by gas jet from an annular gap axially. To simulate this, the Lagrangian approach was employed. A 2D-axisym-metrical model is used in which Realizable K-epsilon model as a viscous model. Then, the primary and secondary breakup are performed by employing the single injection model and wave model based on Weber number. The spray angle and SMD are compared with the experimental data for validating the breakup model. The effect of increasing the mass flow rate of liquid at the lower pintle opening results a narrow dispersion angle that causes the poor mixing quality, which is recovered by increasing the mass flow rate of gas, where the dispersion angle is became wider. And, the effect of the pintle opening distance results a wider dispersion angle thereby the case with poor mixing quality at a lower opening distance is recovered. As a result, it is observed that the case with wider dispersion angle had a wide range of the mass fraction distribution of droplets along the radial position at X/D-pt = 5.00 than the case with narrow dispersion angle. The dispersion angle, spray angle and mixing quality are compared with the correlating parameter N-K. The comparison showed that the mixing quality, spray angle and dispersion angle are not changed largely after N-K = 0.83.
机译:可移动的枢轴喷油器在液体火箭发动机中提供了有效的节流和高燃烧稳定性,可安全地执行太空机动。它具有可移动的枢轴杆,可导致可变的注射面积。模拟物和枢轴开口的质量流影响推进剂的混合性能,这是本文所关注的。因此,通过液体,气体的质量流量和枢轴开口距离的影响来研究混合性能。液体从中心间隙径向喷出以形成薄的液体薄片,该薄的液体薄片被气体从轴向间隙从轴向间隙打断。为了模拟这一点,采用了拉格朗日方法。使用二维轴对称模型,其中可实现的K-ε模型作为粘性模型。然后,通过基于韦伯数的单次注入模型和波动模型进行一次和二次破碎。将喷雾角度和SMD与实验数据进行比较,以验证破裂模型。增加下部枢轴开口处的液体的质量流率的效果导致狭窄的分散角,导致较差的混合质量,这可通过增加气体的质量流率来恢复,其中分散角变宽。并且,针形开口距离的影响导致较宽的分散角,从而恢复了在较低开口距离下混合质量较差的情况。结果,观察到,与较窄的分散角的情况相比,在较宽的分散角的情况下,沿X / D-pt = 5.00的径向位置的液滴的质量分数分布的范围大。将分散角,喷雾角和混合质量与相关参数N-K进行比较。比较表明,N-K = 0.83后,混合质量,喷雾角和分散角变化不大。

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