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Numerical simulation and experimental validation on the particle trajectory in a solid propellant rocket chamber

机译:固体推进剂火箭箱中粒子轨迹的数值模拟与实验验证

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In solid rocket motors (SRMS) using aluminized composite solid propellants and submerged nozzles a two-phase flow pattern is one of the main flow characteristics needs to be investigated. The modeling and validation of two-phase flow are the focus in this research field. In this paper the authors first traced the particle trajectory in a SRM chamber by using numerical method, and then developed a new experimental method to measure the particle trajectory in a SRM chamber to validate the numerical results. The experimental method was based on the RTR (X-ray Real-time Radiography) technique and high-speed motion analyzer. A special method was developed to imitate the particle injection on the propellant surface. The calculation results and measurement data show that the trajectory obtained by numerical simulation was in good agreement with the measured one by imposing proper boundary conditions. For particles with diameter of 75μm, the initial velocity factor of particle is approximately 0.4, and the particles pass through the centerline in both calculation and experiment. The present method can be extended to study the impingement of particles on the wall and other related two-phase flow patterns.
机译:在使用铝化复合固体推进剂和浸没式喷嘴的固体火箭电机(SRMS)中,两相流动图案是需要研究的主要流动特性之一。两相流的建模和验证是本研究领域的重点。在本文中,作者首先通过使用数值方法将粒子轨迹跟踪,然后开发了一种测量SRM室中的粒子轨迹的新实验方法,以验证数值结果。实验方法基于RTR(X射线实时造面)技术和高速运动分析仪。开发了一种特殊方法以模仿推进剂表面上的颗粒注射。计算结果和测量数据表明,通过施加适当的边界条件,通过数值模拟获得的轨迹与测量的轨迹吻合良好。对于直径为75μm的颗粒,颗粒的初始速度因子约为0.4,并且颗粒在计算和实验中通过中心线。可以扩展本方法以研究颗粒在壁上的撞击和其他相关的两相流动图案。

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