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Investigation of Transonic Truss-Braced Wing Aircraft Transonic Wing-Strut Interference Effects using FUN3D

机译:使用FUN3D研究跨音速桁架支撑翼飞机的跨音速翼撑干扰效应

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This paper presents a computational study of transonic wing-strut interference effects of Transonic Truss-Braced Wing (TTBW) aircraft using the high-fidelity CFD code FUN3D. The study is conducted for the wing-strut and the wing-alone configurations at different Mach numbers and Reynolds numbers. The interference effects are calculated by comparing the wing aerodynamics along the spanwise direction between the wing-strut and the wing-alone configurations. The presence of the strut underneath the wing induces a suction peak on the lower surface of the wing, which causes changes in aerodynamic forces and moments, as well as the aerodynamic center location. The interference effects become more pronounced as the Mach number increases. The Reynolds number has less impact on the interference effects. A transonic wing-strut interference aerodynamic correction method is developed for use in a lower-fidelity tool, VSPAERO, coupled to a finite-element model for rapid flutter analysis.
机译:本文介绍了使用高保真CFD代码FUN3D的跨音速桁架支撑翼(TTBW)飞机的跨音速翼撑干扰效应的计算研究。这项研究是针对不同马赫数和雷诺数的机翼支柱和单机翼构型进行的。通过比较沿翼展方向和机翼构型与单机翼构型之间的机翼空气动力学来计算干扰效应。机翼下方的支撑杆的存在会在机翼下表面引起一个吸力峰值,这会引起空气动力和力矩以及空气动力中心位置的变化。随着马赫数的增加,干扰效应变得更加明显。雷诺数对干涉效应的影响较小。开发了一种跨音速机翼撑杆干扰空气动力校正方法,以用于低保真度工具VSPAERO,并与有限元模型耦合以进行快速颤振分析。

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