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Static and Dynamic Simulations of the Pazy Wing Aeroelastic Benchmark by Nonlinear Potential Aerodynamics and detailed FE Model

机译:非线性潜在空气动力学和详细FE模型的凹坑翼空气弹性基准静态和动态模拟

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The Pazy wing test case is a new benchmark for the investigation of aeroelastic effects at very large deflections. Tip deformations in the order of 50% span were measured in wind tunnel tests which renders this model highly attractive for the validation of numerical aeroelastic methods and tools for geometrically nonlinear, large deflection analyses. In this paper we present static coupling simulations and stability analyses for the Pazy wing for a series of onflow velocities and angles of attack. The numerical approach involves a three-dimensional, geometrically nonlinear potential aerodynamic method coupled to a commercial finite element code in a nonlinear (Lagrangian) solution sequence. This approach allows the use of the full FE structural model of the wing which comprises the (aluminum) spar and a 3D printed rib structure. For the stability analyses, the unsteady vortex lattice model is linearized analytically and combined with the structural model (both in discrete time), and the eigenvalues of the dynamics matrix are calculated (p-method). Results of the nonlinear static coupling simulations are presented for onflow velocities of 30, 40, and 50 m/s. The aeroelastic stability of the wing is investigated about states of large static deflections and shows significant variation as the deflection is increased.
机译:七角翼测试案例是对非常大的偏转的空气弹性效应调查的新基准。在风洞试验中测量了50%跨度的尖端变形,这使得该模型具有高度吸引力的对数值空气弹性方法和工具进行几何非线性,大偏转分析的验证。在本文中,我们为慢性翼的静态耦合模拟和稳定性分析为一系列血流速度和攻击角度。数值方法涉及三维的几何非线性电位空气动力学方法,耦合到非线性(拉格朗日)溶液序列中的商业有限元码。该方法允许使用机翼的全Fe结构模型,该机翼包括(铝)翼梁和3D印刷肋结构。对于稳定性分析,非定常涡旋晶格模型被分析地线性化并与结构模型(无离散时间)结合,计算动力学矩阵的特征值(P-Method)。非线性静态耦合模拟的结果呈现为30,40和50m / s的上流速度。针对大静态偏转的状态研究了机翼的空气弹性稳定性,并且随着偏转增加而显示显着变化。

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