航空发动机涡轮结构几何因素编码智能设计研究

Wencong Xu, Hongyi Lu, Lei Zhao, Borui He
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引用次数: 0

摘要

近年来,随着计算机技术和人工智能设计技术的飞速发展,通过将结构设计的经验和知识转化为计算机可执行的规则和算法,可以快速生成多种可能的设计方案。为了实现航空发动机的智能设计,本文利用几何编码技术提出了航空发动机涡轮转子结构的编码模型。飞机发动机涡轮转子结构按几何相似类型分为若干单元,这些单元再按其功能类型、连接关系和材料属性继续分为属性集。这些属性集可以使用几何编码技术进行编码。实验模拟了这些编码,用于涡轮转子结构的点云建模,可以快速实现,并结合各种算法,在 Microsoft Visual studio MFC 类库中显示涡轮转子的点云模型。结果表明,通过创建航空发动机涡轮转子的几何代码,可以快速创建并显示涡轮转子结构的点云模型,为后续应用机器学习求解并找到最优设计方案奠定了基础。
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Research on Intelligent Design of Geometric Factor Encoding for Aircraft Engine Turbine Structures
In recent years, with the rapid development of computer technology and artificial intelligence design technology, multiple possible design solutions can be quickly generated by transforming the experience and knowledge of structural design into computer executable rules and algorithms. To achieve intelligent design of aircraft engines, this paper proposes an encoding model for the turbine rotor structure of aircraft engines using geometric encoding technology. The turbine rotor structure of aircraft engines is divided into several units according to geometric similarity types, these units continue to be divided into attribute sets according to their functional types, connection relationships, and material properties. These attribute sets can be encoded using geometric encoding technology. The experiment simulated that these codes, for the point cloud modeling of turbine rotor structure, can be quickly achieved and they combine various algorithms to display the point cloud model of the turbine rotor in the Microsoft Visual studio MFC class library. The results show that by creating geometric codes for the turbine rotor of aircraft engines, it is possible to quickly create and display point cloud models of the turbine rotor structure, laying the foundation for subsequent application of machine learning to solve and find the optimal design solution.
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