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:Aerosp Sci Technol
Abstract:Due to orders of magnitude differences in time scale between structural heat transfer and aeroelastic responses, one-way aerothermal-aeroelastic coupling is adopted to develop a thermal flutter prediction method for a hypersonic vehicle operating along a desired trajectory. In view of the strong dependency of the heat transfer process on the unsteady hypersonic trajectory, an aerothermal synchronization algorithm is established in a non-inertial frame of reference by formulating the governing equations of fluid flow and heat transfer into a unified form. Then the heated free-vibration frequencies and mode shapes are calculated at each trajectory point by using a finite-element analysis. Consequently, the flutter computations are performed on the transiently heated structure at each trajectory point by utilizing a coupled computational fluid dynamics (CFD)/computational structural dynamics (CSD) method. Because of the mass dissimilarity caused by directly increasing the dynamic pressure of a compressible flow, the technique of variable stiffness is introduced to evaluate the flutter dynamic pressure at the point of mass similarity and the stiffness margin of flutter. The present method is applied to the thermal flutter computations of a hypersonic all-movable rudder operating along a given trajectory. The computed temperature differences between the synchronization and conventional partitioned methods, and the significant effects of aerodynamic heating on the structural modes and the flutter characteristics are analyzed in detail. © 2019 Elsevier Masson SAS
ISSN No.:1270-9638
Translation or Not:no
Date of Publication:2019-11-01
Co-author:Shen, Ennan,lzl,zhoudi,Wu, Jiangpeng
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)。