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Local Piston Theory as an Alternative to Mesh Deformation: Slender Wing/Body Configurations

机译:局部活塞理论可替代网格变形:细长的机翼/车身配置

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摘要

The suitability of local piston theory for modeling static loads on a deforming low-aspect-ratio wing in the presence of aerodynamic interference is investigated. Predictions using Euler-based local piston theory are compared to Euler solutions for the deformed geometry. Moderate to large deformations are investigated for the leeside wing on a cruciform wing/body configuration. It is shown that local piston theory is suitable even for large deformations, with the perturbation downwash/Mach number supersonic, provided that the loading induced by deformation is not dominated by interaction with body vortices or other sources of aerodynamic interference. Second-order local piston theory is recommended for deformations producing downwash/Mach numbers approaching sonic. The influence of the choice of piston theory coefficients is in producing an estimation band for the local piston theory load prediction, with insignificant influence on the load slope in the present investigation. In conclusion, local piston theory is put forward as a viable alternative to mesh deformation toward reduction of the computational cost of aerodynamic load prediction for static aeroelasticity, provided that perturbation loads are dominated by local twist and not by vortex interaction.
机译:研究了在存在气动干扰的情况下局部活塞理论在变形低纵横比机翼上模拟静载荷的适用性。使用基于Euler的局部活塞理论的预测与针对变形几何的Euler解进行了比较。研究了十字形机翼/机体构型的后侧机翼的中等到大变形。结果表明,局部活塞理论即使对于大的变形也适用,其下冲扰动/马赫数是超音速的,前提是由变形引起的载荷不受与体涡或其他气动干扰源相互作用的支配。建议将二阶局部活塞理论用于产生向下冲洗/马赫数接近声波的变形。活塞理论系数选择的影响在于产生用于局部活塞理论载荷预测的估计带,而在本研究中对载荷斜率的影响很小。总之,提出了局部活塞理论作为网格变形的可行替代方案,以减少静态静空气弹性的空气动力学载荷预测的计算成本,前提是扰动载荷由局部扭转而不是涡旋相互作用主导。

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