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A Quasi-Steady Flexible Launch Vehicle Stability Analysis Using Steady CFD with Unsteady Aerodynamic Enhancement

机译:稳态CFD与不稳定空气动力增强的准稳态柔性运载火箭稳定性分析

摘要

Launch vehicles frequently experience a reduced stability margin through the transonic Mach number range. This reduced stability margin is caused by an undamping of the aerodynamics in one of the lower frequency flexible or rigid body modes. Analysis of the behavior of a flexible vehicle is routinely performed with quasi-steady aerodynamic lineloads derived from steady rigid computational fluid dynamics (CFD). However, a quasi-steady aeroelastic stability analysis can be unconservative at the critical Mach numbers where experiment or unsteady computational aeroelastic (CAE) analysis show a reduced or even negative aerodynamic damping. This paper will present a method of enhancing the quasi-steady aeroelastic stability analysis of a launch vehicle with unsteady aerodynamics. The enhanced formulation uses unsteady CFD to compute the response of selected lower frequency modes. The response is contained in a time history of the vehicle lineloads. A proper orthogonal decomposition of the unsteady aerodynamic lineload response is used to reduce the scale of data volume and system identification is used to derive the aerodynamic stiffness, damping and mass matrices. The results of the enhanced quasi-static aeroelastic stability analysis are compared with the damping and frequency computed from unsteady CAE analysis and from a quasi-steady analysis. The results show that incorporating unsteady aerodynamics in this way brings the enhanced quasi-steady aeroelastic stability analysis into close agreement with the unsteady CAE analysis.
机译:在跨音速马赫数范围内,运载火箭的稳定性经常会降低。这种降低的稳定性裕度是由于在低频柔性或刚体模式之一中空气动力学的未阻尼引起的。柔性车辆的性能分析通常使用从稳态刚性计算流体动力学(CFD)得出的准稳态气动线载荷进行。但是,准稳态气动弹性稳定性分析在临界马赫数下可能并不保守,在该数值下,实验或非稳态计算气动弹性(CAE)分析显示出减小的或什至是负的气动阻尼。本文将提出一种增强具有不稳定空气动力学的运载火箭的准稳态气动弹性稳定性分析的方法。增强的公式使用非稳态CFD计算所选低频模式的响应。该响应包含在车辆线负载的时间历史中。对不稳定的空气动力学线载荷响应进行适当的正交分解,以减小数据量的规模,并使用系统标识来得出空气动力学的刚度,阻尼和质量矩阵。将增强的准静态气动弹性稳定性分析的结果与非稳态CAE分析和准稳态分析计算的阻尼和频率进行比较。结果表明,以这种方式纳入非定常空气动力学可以使增强的准稳态空气弹性稳定性分析与非定常CAE分析紧密相关。

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    Bartels Robert E.;

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  • 年度 2011
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