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PARTICLE TRACKING IN COMBUSTION CHAMBER OF SOLID ROCKET MOTOR

机译:固体火箭发动机燃烧室的颗粒跟踪

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摘要

It has been a challenge to investigate how to trace particles in a solid rocket motor (SRM) using aluminized composite solid propellant and submerged nozzle. In using CFD simulations, the boundary conditions for the ejecting particles constrain their trajectories, hence these affect the two-phase flow calculations, and thus significantly affect the evaluation of the slag accumulation. The RTR (X-ray Real-time Radiography) technique is a new method to detect the particles in a firing SRM. A method was developed to simulate the particle ejection from the propellant surface. The moving trajectories of metal particles in a firing combustion chamber were measured by using the RTR high-speed motion analyzer. Numerical simulations with different propellant-surface boundary conditions were performed to calculate particle trajectories. Through this study an appropriate surface velocity condition on the propellant surface was discovered. The method developed here can be used for the future CRM research.
机译:研究如何使用镀铝复合固体推进剂和浸没式喷嘴来追踪固体火箭发动机(SRM)中的颗粒是一项挑战。在使用CFD模拟时,喷射颗粒的边界条件限制了它们的轨迹,因此,这会影响两相流计算,从而显着影响炉渣积聚的评估。 RTR(X射线实时射线照相)技术是一种用于检测发射SRM中颗粒的新方法。开发了一种方法来模拟从推进剂表面喷射粒子。使用RTR高速运动分析仪测量了燃烧室中金属颗粒的运动轨迹。进行了具有不同推进剂-表面边界条件的数值模拟,以计算粒子轨迹。通过这项研究,发现了推进剂表面的适当表面速度条件。本文开发的方法可用于将来的CRM研究。

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