首页> 外文会议>AIAA international space planes and hypersonic systems and technologies conference >Efficient Uncertainty Quantification in Multidisciplinary Analysis of a Reusable Launch Vehicle
【24h】

Efficient Uncertainty Quantification in Multidisciplinary Analysis of a Reusable Launch Vehicle

机译:可重复使用发动机的多学科分析中有效的不确定性量化

获取原文

摘要

The objective of this study was to apply a recently developed uncertainty quantification framework to the multidisciplinary analysis of a reusable launch vehicle (RLV). This particular framework is capable of efficiently propagating mixed (inherent and epistemic) uncertainties through complex simulation codes. The goal of the analysis was to quantify uncertainty in various output parameters obtained from the RLV analysis, including the maximum dynamic pressure, cross-range, range, and vehicle takeoff gross weight. Three main uncertainty sources were treated in the simulations: (1) reentry angle of attack (inherent uncertainty), (2) altitude of the initial reentry point (inherent uncertainty), and (3) the Young's Modulus (epistemic uncertainty). The Second-Order Probability Theory utilizing a stochastic response surface obtained with Point-Collocation Non-Intrusive Polynomial Chaos was used for the propagation of the mixed uncertainties. This particular methodology was applied to the RLV analysis, and the uncertainty in the output parameters of interested was obtained in terms of intervals at various probability levels. The preliminary results have shown that there is a large amount of uncertainty associated with the vehicle takeoff gross weight. Furthermore, the study has demonstrated the feasibility of the developed uncertainty quantification framework for efficient propagation of mixed uncertainties in the analysis of complex aerospace systems.
机译:本研究的目的是将最近开发的不确定性量化框架应用于可重复使用的发射车辆(RLV)的多学科分析。该特定框架能够通过复杂的仿真代码有效地传播混合(内在和认可)的不确定性。分析的目的是量化从RLV分析获得的各种输出参数中的不确定性,包括最大动态压力,跨距,范围和车辆起飞毛重。在模拟中处理了三个主要的不确定性来源:(1)再入攻击角度(固有不确定性),(2)初始再入点的高度(固有不确定性),和(3)杨氏模量(认识性不确定性)。利用点凸起非侵入式多项式混沌获得的二阶概率理论用于混合不确定性的传播。该特定方法应用于RLV分析,并且在各种概率水平的间隔方面获得了感兴趣的输出参数的不确定性。初步结果表明,与车辆起飞毛重相关的大量不确定性。此外,该研究表明了开发的不确定性量化框架的可行性,以便在复杂航空航天系统分析中有效地传播混合不确定性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号