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首页> 外文期刊>The Aeronautical Journal >Demonstration of a prototype design synthesis capability for space access vehicle design
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Demonstration of a prototype design synthesis capability for space access vehicle design

机译:用于空间接入车辆设计的原型设计合成能力的演示

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The early conceptual design (CD) phase of space access vehicles (SAVs) is the most abstract, innovative and technologically challenging phase of the entire aerospace design life cycle. Although the design decision-making during this phase influences around 80 percent of the overall life cycle cost, it is the most abstract and thus least understood phase of the entire design life cycle. The history of SAV design provides numerous examples of project failures that could have been avoided if the decision-maker had had the capability to forecast the potential risks and threats correctly ahead of time during the conceptual design phase. The present study addresses this crucial phase and demonstrates a best-practice synthesis methodology prototype to advance the current state of the art of CD as applied to SAV design. Developed by the Aerospace Vehicle Design (AVD) Laboratory at the University of Texas at Arlington (UTA), the Aerospace Vehicle Design Synthesis process and software (AVDS) is a prototype solution for a flight vehicle configuration-flexible (generic) design synthesis capability that can be applied to the primary categories of SAVs. This study focusses on introducing AVDS, followed by the demonstration and verification of the system's capability through a sizing case study based on the data-rich Boeing X-20 Dyna-Soar spaceplane.
机译:空间访问车辆的早期概念设计(CD)阶段(SED)是整个航空航天设计生命周期的最摘要,创新和技术挑战性阶段。尽管在这种阶段的设计决策影响了整体生命周期成本的80%左右,但它是最摘要和如此最不了解的整个设计生命周期的阶段。 Sav设计的历史提供了许多项目故障的例子,如果决策者有能力预测在概念设计阶段在概念设计阶段提前正确地预测潜在风险和威胁。本研究解决了这种关键阶段,并证明了最佳实践合成方法原型,以推进应用于Sav设计的CD的当前状态。由航空航天车辆设计(AVD)实验室在阿灵顿(UTA)的德克萨斯大学,航空航天车辆设计合成过程和软件(AVDS)是一种用于飞行车辆配置 - 柔性(通用)设计合成能力的原型解决方案可以应用于SEAV的主要类别。本研究侧重于引入AVDS,随后通过基于数据富有的波音X-20 Dyna-Soar Spplane进行规模案例研究来介绍AVDS的示范和验证系统能力。

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