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Coupled Simulation of CFD and Flight Mechanics with a Two-Species-Gas-Model for the Hot Staging of a Multistage Rocket

机译:CFD和飞行力学与两种气体模型耦合的多级火箭热分级模拟

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The hot staging dynamics of a multistage rocket is studied using the coupled simulation of Computational Fluid Dynamics (CFD) and Flight Mechanics (FM). In the coupled simulations, the free-stream is modeled as "cold air" and the exhausted plume from the continuing-stage-motor is modeled with an equivalent calorically-perfect-gas that approximates the properties of the plume at the nozzle exit. The Navier-Stokes equations in the coupled simulations are time-accurately solved in moving system, with which the Flight Mechanics equations can be fully coupled. The Chimera mesh technique is utilized to deal with the relative motions of the separated stages. A few representative staging cases with different initial flight conditions of the rocket are studied with the coupled simulation. Based on the simulation results, the staging dynamics of the rocket are finally analyzed.
机译:使用计算流体动力学(CFD)和飞行力学(FM)的耦合仿真研究了多级火箭的热分级动力学。在耦合模拟中,将自由流建模为“冷空气”,并用等效的热量完美气体对来自连续级电动机的排出烟流进行建模,该气体近似于喷嘴出口处的烟流特性。耦合仿真中的Navier-Stokes方程在运动系统中可以在时间上精确求解,因此可以将飞行力学方程完全耦合。 Chimera网格技术用于处理分离级的相对运动。通过耦合仿真研究了几种具有不同初始飞行条件的火箭弹具有代表性的阶段情况。根据仿真结果,最后对火箭的分级动力学进行了分析。

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