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Coupled Aeroelastic Vortex Lattice Modeling of Flexible Aircraft

机译:柔性飞机耦合气弹涡流格子模型

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This paper presents a recently developed computational tool for aeroelastic analysis of aircraft performance. The computational tool couples a vortex-lattice code, Vorview, with an aeroelastic model that computes wing structural deflections under a combined coupled bending-torsion motion. The aeroelastic model of the wing structure is based on a one-dimensional structural dynamic theory using steady state aerodynamics assumption. An automated aircraft geometry modeler is developed to generate a deformed aircraft geometry based on the structural deflection aeroelastic analysis. The computation is iterated until the solution converges within a specified error tolerance. This computational tool is capable to predict both steady state aerodynamics as well as aeroelastically induced unsteady aerodynamics. Simulations are conducted for a generic transport aircraft to demonstrate the capability of the computational tool.
机译:本文介绍了一种最近开发的用于飞机性能气动弹性分析的计算工具。该计算工具将涡旋码Vorview与气动弹性模型耦合,该模型在组合的弯曲-扭转运动耦合下计算机翼的结构挠度。机翼结构的气动弹性模型基于一维结构动力学理论,采用了稳态空气动力学假设。开发了自动飞机几何建模器,以基于结构变形气动弹性分析生成变形的飞机几何。迭代计算,直到解决方案收敛到指定的容错范围内。该计算工具能够预测稳态空气动力学以及气动弹性诱发的非稳态空气动力学。对通用运输机进行了仿真,以演示计算工具的功能。

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