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Aircraft conceptual design - an adaptable parametric sizing methodology.

机译:飞机概念设计-一种可调整的参数选型方法。

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摘要

Aerospace is a maturing industry with successful and refined baselines which work well for traditional baseline missions, markets and technologies. However, when new markets (space tourism) or new constrains (environmental) or new technologies (composite, natural laminar flow) emerge, the conventional solution is not necessarily best for the new situation. Which begs the question "how does a design team quickly screen and compare novel solutions to conventional solutions for new aerospace challenges?" The answer is rapid and flexible conceptual design Parametric Sizing. In the product design life-cycle, parametric sizing is the first step in screening the total vehicle in terms of mission, configuration and technology to quickly assess first order design and mission sensitivities. During this phase, various missions and technologies are assessed. During this phase, the designer is identifying design solutions of concepts and configurations to meet combinations of mission and technology. This research undertaking contributes the state-of-the-art in aircraft parametric sizing through (1) development of a dedicated conceptual design process and disciplinary methods library, (2) development of a novel and robust parametric sizing process based on 'best-practice' approaches found in the process and disciplinary methods library, and (3) application of the parametric sizing process to a variety of design missions (transonic, supersonic and hypersonic transports), different configurations (tail-aft, blended wing body, strut-braced wing, hypersonic blended bodies, etc.), and different technologies (composite, natural laminar flow, thrust vectored control, etc.), in order to demonstrate the robustness of the methodology and unearth first-order design sensitivities to current and future aerospace design problems. This research undertaking demonstrates the importance of this early design step in selecting the correct combination of mission, technologies and configuration to meet current aerospace challenges. Overarching goal is to avoid the reoccurring situation of optimizing an already ill-fated solution.
机译:航空航天业是一个日趋成熟的行业,具有成功且完善的基准,可以很好地适用于传统基准任务,市场和技术。但是,当出现新市场(太空旅游)或新约束(环境)或新技术(复合自然层流)时,常规解决方案不一定适合新情况。哪个问题是“设计团队如何快速筛选新解决方案并将其与传统解决方案进行比较,以应对新的航空航天挑战?”答案是快速灵活的概念设计参数调整。在产品设计生命周期中,参数大小确定是根据任务,配置和技术筛选整车的第一步,以快速评估一阶设计和任务敏感性。在此阶段,将评估各种任务和技术。在此阶段中,设计人员将确定概念和配置的设计解决方案,以满足任务和技术的结合。这项研究工作通过(1)开发专用的概念设计过程和学科方法库,(2)开发基于“最佳实践”的新颖而强大的参数定型过程,为飞机参数定型领域的最新发展做出了贡献在过程和学科方法库中找到的方法,以及(3)将参数化大小确定过程应用于各种设计任务(跨音速,超音速和高超音速运输),不同的配置(尾部,后翼,机翼混合,撑杆支撑)机翼,高超声速混合体等)和不同技术(复合材料,自然层流,推力矢量控制等),以证明该方法的稳健性和对当前和未来航空航天设计的挖掘一阶设计敏感性问题。这项研究表明了早期设计步骤在选择正确的任务,技术和配置组合以应对当前航空航天挑战方面的重要性。总体目标是避免反复出现的情况,即优化已经不合格的解决方案。

著录项

  • 作者

    Coleman, Gary John, Jr.;

  • 作者单位

    The University of Texas at Arlington.;

  • 授予单位 The University of Texas at Arlington.;
  • 学科 Engineering Aerospace.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 449 p.
  • 总页数 449
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:36:43

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