郭同庆
Professor Supervisor of Master's Candidates
Alma Mater:南京航空航天大学
Education Level:南京航空航天大学
Degree:Doctoral Degree in Engineering
School/Department:College of Aerospace Engineering
Discipline:Fluid Mechanics. Flight Vehicle Design
Business Address:C12-317
Contact Information:13915942440
E-Mail:
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Affiliation of Author(s):航空学院
Journal:ADVANCES IN APPLIED MATHEMATICS AND MECHANICS
Key Words:Static aeroelastic computation high-aspect-ratio wing pressurized wind tunnel CFD-CSD structural stiffness
Abstract:In this study, the structural model of a high-aspect-ratio wing is unknown but its structural deformation is measured at some attack angles in a pressured wind tunnel. To implement the static aeroelastic computation at an arbitrary state, an inversion method is proposed to derive the structural stiffness from the known deformation. The wing is simplified into a single-beam model and its bending and torsional flexibility distributions are respectively expressed as a linear combination of several selected basis functions. The bending deformation can be then expressed as a linear combination of the bending deformations of the models structurally characterized by each basis function, which are gradually evaluated by loading the aerodynamic loads computed at the chosen design state. Based on the measured deformation, the bending stiffness distribution is ultimately fitted by a least square method. The torsional stiffness distribution is solved in the same way. Resultantly, a structural deformation-based computational method for static aeroelasticity of a high-aspect-ratio wing model is achieved by combining the structural stiffness inversion method with a coupled computational fluid dynamics (CFD)-computational structural dynamics (CSD) algorithm. The present method is applied to the design and validation states and the numerical results agree well with the experimental data.
ISSN No.:2070-0733
Translation or Not:no
Date of Publication:2018-10-01
Co-author:Shen, Ennan,lzl,Ding, Li
Correspondence Author:gtq
长期从事计算流体力学、气动弹性力学和飞行器设计研究。首次提出工程急需的颤振余量变刚度分析技术,研发出系统成熟的飞行器静、动气动弹性CFD/CSD耦合算法和自主知识产权软件,广泛应用于型号工程。主持和参与国家自然基金、973计划、各种预研和型号攻关项目。发表学术论文40余篇,出版专著1部,授权发明专利3项;获江苏省优秀博士学位论文,工信部国防科技进步二等奖2项(本人分别排名第1、2),江苏省科学技术一等奖(本人排名第8)。