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Aerodynamic Database Generation for SRB Separation from a Heavy Lift Launch Vehicle

机译:用于从重型升降式运载火箭分离SRB的空气动力学数据库生成

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An engineering approach is presented for database generation of aerodynamic force and moment coefficients on Solid Rocket Boosters (SRBs) during separation from a Heavy Lift Launch Vehicle. The approach balances accuracy and affordability by generating a steady-state database of solutions using the inviscid flow solver Cart3D with adjoint based adaptive mesh refinement. The procedure also includes point checking the database using the viscous Reynolds Averaged Navier-Stokes solver OVERFLOW. The simulation matrix consists of 3 degrees of freedom by planar translation and rotation of the SRBs from their original attached positions. Good agreement with viscous multi-species simulations has confirmed that the single-species inviscid assumptions are valid for this plume impingement flow. The database provides axial forces, side forces, and yaw moments on the SRBs during separation from the core. This data is to be used for vehicle and trajectory planning to avoid re-contacting the core.
机译:提出了一种工程方法,用于从重型举升运载工具中分离期间在固体火箭助推器(SRB)上生成空气动力和力矩系数的数据库。该方法通过使用无粘性流求解器Cart3D和基于伴随的自适应网格细化生成稳定的解决方案数据库来平衡准确性和可负担性。该过程还包括使用粘性雷诺平均Navier-Stokes求解器OVERFLOW对数据库进行点检查。模拟矩阵由3个自由度组成,这些自由度是SRB从其原始附着位置进行平面平移和旋转所产生的。与粘性多物种模拟的良好一致性已经证实,单物种无粘性假设对于这种羽流冲击流是有效的。该数据库提供了从岩心分离过程中SRB上的轴向力,侧向力和偏航力矩。该数据将用于车辆和轨迹规划,以避免重新接触核心。

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