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A novel framework for reliability assessment of payload fairing separation considering multi-source uncertainties and multiple failure modes

机译:考虑多源不确定性和多种故障模式的有效载荷公平分离的可靠性评估的新框架

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摘要

Payload fairing separation is a critical process for various aerospace structures. To further guarantee the safety of separation, multi-source uncertainties in the processes of manufacturing, fabrication and assembly need to be considered in the stage of structural design. Reliability assessment is a powerful tool to deal with multi-source uncertainties, however, the high computational cost of structural analyses is the main challenge of the numerical simulation of payload fairing separation. In this paper, a novel framework for reliability assessment of payload fairing separation is proposed. In general, since not all potential failure modes will be happened for a certain design, sampling method is utilized to identify the active failure mode firstly. Then, an efficient global sensitivity analysis method is used for the dimension reduction to simply the high dimensional problem. And then, the MPP-based simplified bivariate dimension reduction method (MPP-based SBDRM) is proposed to improve the accuracy of MPP-based DRM for calculating the failure probability. In the proposed method, the augmented step size adjustment (ASSA) method is employed to ensure the robustness and efficiency of the most probable point (MPP) searching process. To further improve the efficiency, an adaptive surrogate model is constructed to replace the time-consuming finite element analysis (FEA). Two mathematical benchmarks are used to validate the performance of the proposed method. Finally, a typical practical payload fairing demonstrates that the proposed framework is able to assess the reliability of fairing separation in an efficient and accurate manner.
机译:有效载荷整体分离是各种航空航天结构的关键过程。为了进一步保证分离的安全性,在结构设计的阶段需要考虑制造,制造和组装过程中的多源不确定性。可靠性评估是一种强大的工具,可以处理多源不确定性,但结构分析的高计算成本是有效载放整体分离的数值模拟的主要挑战。本文提出了一种新的有效载荷公平分离的可靠性评估框架。通常,由于不发生所有潜在的故障模式,因此利用采样方法首先识别主动故障模式。然后,有效的全局敏感性分析方法用于降低尺寸降低以简单地是高维问题。然后,提出了基于MPP的简化双变尺寸减少方法(基于MPP的SBDRM),以提高基于MPP的DRM的精度,以计算故障概率。在所提出的方法中,采用增强步长调整(ASSA)方法来确保最可能点(MPP)搜索过程的鲁棒性和效率。为了进一步提高效率,构建自适应替代模型以替换耗时的有限元分析(FEA)。两个数学基准用于验证所提出的方法的性能。最后,典型的实际有效载荷公平表明,所提出的框架能够以高效和准确的方式评估整理分离的可靠性。

著录项

  • 来源
    《Thin-Walled Structures》 |2021年第3期|107327.1-107327.14|共14页
  • 作者单位

    Dalian Univ Technol Dept Engn Mech Key Lab Digital Twin Ind Equipment State Key Lab Struct Anal Ind Equipment Dalian 116023 Peoples R China;

    Dalian Univ Technol Dept Engn Mech Key Lab Digital Twin Ind Equipment State Key Lab Struct Anal Ind Equipment Dalian 116023 Peoples R China;

    China Acad Launch Vehicle Technol Beijing 100076 Peoples R China;

    Dalian Univ Technol Dept Engn Mech Key Lab Digital Twin Ind Equipment State Key Lab Struct Anal Ind Equipment Dalian 116023 Peoples R China;

    Dalian Univ Technol Dept Engn Mech Key Lab Digital Twin Ind Equipment State Key Lab Struct Anal Ind Equipment Dalian 116023 Peoples R China;

    Dalian Univ Technol Dept Engn Mech Key Lab Digital Twin Ind Equipment State Key Lab Struct Anal Ind Equipment Dalian 116023 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Payload fairing separation; Reliability assessment; Augmented step size adjustment method; Global sensitivity analysis; MPP-Based DRM; Surrogate model;

    机译:有效载荷整体分离;可靠性评估;增强步长调整方法;全局敏感性分析;基于MPP的DRM;代理模型;

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