首页> 外文会议>International forum on aeroelasticity and structural dynamics >Load Analysis Method of Very Flexible Wing/Propeller System
【24h】

Load Analysis Method of Very Flexible Wing/Propeller System

机译:挠性机翼/螺旋桨系统载荷分析方法

获取原文

摘要

Light structure weight and large elastic deformation make the geometric nonlinearity of the large aspect ratio airplane that uses propeller as propulsion very remarkable. In one aspect, the load and slipstream of the propeller will cause strong interference on the flow field of the wing. In the other aspect, when the wing is bearing aerodynamic force, it makes large deformation. Thus, the traditional linear analysis based on the small deformation hypothesis is no longer suitable. In this paper, a new method for static aeroelastic analysis and aerodynamic loads computation of the flexible wing with propeller system is presented. The Blade Element-Momentum theory is applied to calculate the load and aerodynamic parameters of the propeller system. Then a Rankine vortex core is placed on the propeller's installation shaft to simulate the propeller effect that makes the wing's flow field in the propeller influence area has an axial velocity increment as well as a rotation speed on the flexible wing. Further, the 3-D lifting-line method is utilized to calculate the steady aerodynamic loads of the curved bending wing who has downwash from the propeller slipstream as well as the horseshoe vortices. Then the generalized surface splines and large deflection interpolation is adopted to solve the geometrical characters of structure/aerodynamic coupling problem and get the information that the aerodynamic computation needs. Finally for a very flexible rectangular wing model with propeller system, the geometric static aeroelastic analysis is carried out. Its application in preliminary design and quick analysis is promising.
机译:光结构重量和大弹性变形使得大宽高比飞机的几何非线性,其使用螺旋桨作为推进器非常出色。在一个方面,螺旋桨的负载和滑流将对机翼的流场产生强烈的干扰。在另一方面,当机翼承载空气动力时,它变形大。因此,基于小变形假设的传统线性分析不再适合。本文介绍了一种新方法,用于静态空气弹性分析和空气动力载荷与螺旋桨系统的柔性翼的计算。刀片元件 - 动量理论用于计算螺旋桨系统的负载和空气动力学参数。然后将Quankine Vortex芯放置在螺旋桨的安装轴上,以模拟螺旋桨影响区域中的机翼流场的螺旋桨效果具有轴向速度增量以及柔性翼上的转速。此外,利用3-D升降线法计算从螺旋桨滑流以及马蹄涡流的弯曲弯曲翼的稳定空气动力载荷。然后采用广义表面样条和大的偏转插值来解决结构/空气动力学耦合问题的几何特征,并获取空气动力学计算需求的信息。最后,对于具有螺旋桨系统的非常灵活的矩形翼型,进行几何静态空气弹性分析。其在初步设计和快速分析中的应用是有前途的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号