基于三维虚拟设计的航空发动机鲁棒部件模型设计

Dan Zhao, Ming-fei Qu
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引用次数: 0

摘要

航空发动机是航空动力研究与开发的重点。由于其结构复杂、开发周期长、科研投入高,发动机试验成本和风险高,3D虚拟设计的优势得以体现。为此,设计了基于三维虚拟设计的航空发动机部件模型。本文对航空发动机外部部件进行了深入分析,应用三维虚拟技术实现了航空发动机外部部件的三维虚拟可视化,并通过虚拟现实建模语言(VRML)建立了外部部件模型库。最后,基于细节层次(LOD)算法对形状部件的三维虚拟模型进行了简化。实验结果表明,与给定的最大极限相比,本文模型的设计延迟较小,模型与实体之间的偏差较小,表明模型的应用性能较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Aeroengine Robust Component Model Design Based on 3D Virtual Design
Aero engine is the focus of aero power research and development. Due to its complex structure, long development cycle and high scientific research investment, the cost and risk of engine test are high, and the advantages of 3D virtual design are reflected. For this reason, the aeroengine component model based on 3D virtual design is designed. This paper deeply analyzes the aeroengine exterior components, applies the 3D virtual technology to realize the 3D virtual visualization of aeroengine exterior components, and then establishes the exterior component model base through Virtual reality modeling language (VRML). Finally, the 3D virtual model of shape components is simplified based on Level of detail (LOD) algorithm. The experimental results show that compared with the given maximum limit, the design delay of the model in this paper is small, and the deviation between the model and the entity is small, indicating that the application performance of the model is good.
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