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Constraints and CFD simulation-based parametric reconstruction for 2D blade profile in reverse engineering

机译:逆向工程中基于约束和基于CFD仿真的2D叶片轮廓的参数重构

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摘要

Blade profile plays an extremely important role in the aerodynamic performance of turbomachinary. However, in the process of secondary machining for near-net shape blade and serviced blade, the deviation between nominal profile and measured data can raise serious problems for NC tool path generation. It is even worse that unreasonable reconstruction may be responsible for the deteriorated aerodynamic performance and subsequent high in-service cost. This paper presents a parametric reconstruction strategy for 2D blade profile in reverse engineering. The reconstruction profile approaches to the nominal model and its performance is proved to be more acceptable. This consists in the optimization of parametric geometry (modeling and modification) based on parameter constraints and computational fluid dynamics simulation rather than measured data itself. Some practical examples are used to demonstrate the usefulness and superiority of the strategy.
机译:叶片轮廓在涡轮机的空气动力性能中起着极其重要的作用。但是,在近净形刀片和维修刀片的二次加工过程中,名义轮廓和测量数据之间的偏差会给数控刀具路径生成带来严重问题。更糟糕的是,不合理的改造可能会导致空气动力学性能下降,并导致随后的高昂服务成本。本文提出了逆向工程中二维叶片轮廓的参数化重构策略。重建轮廓接近标称模型,并且其性能被证明是可以接受的。这包括基于参数约束和计算流体动力学模拟而不是测量数据本身来优化参数几何(建模和修改)。一些实际的例子用来证明该策略的有用性和优越性。

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