赵岩
Professor Supervisor of Doctorate Candidates Supervisor of Master's Candidates
Gender:Male
Alma Mater:大连理工大学
Degree:Doctoral Degree
School/Department:工程力学系
Discipline:Dynamics and Control. Computational Mechanics
Business Address:综合实验1号楼503室
Contact Information:0411-84706337
E-Mail:yzhao@dlut.edu.cn
Hits:
Indexed by:期刊论文
Date of Publication:2015-01-01
Journal:JOURNAL OF LOW FREQUENCY NOISE VIBRATION AND ACTIVE CONTROL
Included Journals:SCIE
Volume:34
Issue:2,SI
Page Number:119-135
ISSN No.:0263-0923
Abstract:Hypersonic aircraft always face bad flight environment related to the coupling effects of high temperature and random vibration. Numerical analysis of thermoacoustic characteristics of components inside such an aircraft is presented in this paper. An actual aircraft cabin composite structure including a heat resistant layer, an adiabatic layer and metal frameworks is modeled with the finite element mesh generation method. Transient heat conduction of the hypersonic flight aircraft is analyzed based on a block-iterative coupling method which can consider the atmosphere-aircraft interaction. Then the Von Karman turbulence spectrum is employed to define the random vibration environment of the present aircraft. The thermodynamic response of the system is solved by the pseudo-excitation method which can improve the computation efficiency greatly. Finally, thermoacoustic characteristic of the cavity inside the aircraft cabin is analyzed when the transient heat conduction and random vibration due to atmosphere turbulence are both included. A numerical method is proposed based on a structure-acoustic coupling method which can use acoustic equations to simulate the propagation of the acoustic wave in the flow. It can be found from the computed results that the change of the temperature influences both the thermodynamic characteristic of the aircraft cabin and thermoacoustic characteristic of the component inside the present aircraft significantly. So the coupling effects of high temperature and random vibration on thermoacoustic characteristic of a hypersonic flight aircraft cannot be neglected. The proposed numerical analysis method in this paper can be widely applied to numerical investigations of thermoacoustic systems inside hypersonic aircraft.
赵岩,工程力学系,副教授。从事结构动力学与控制方向研究,主持国家自然科学基金2项,科技支撑项目1项,参加973项目、863项目等国家及省部级项目多项,在国内外期刊发表学术论文60余篇。现为中国振动工程学会随机振动专业委员会青年委员、中国土木工程学会计算机应用分会理事、辽宁省力学学会理事以及国际计算力学协会会员。 教育经历 1. 2000/9–2003/7, 大连理工大学, 工程力学, 博士, 导师:林家浩教授 2. 1997/9–2000/7, 大连理工大学, 一般力学, 硕士, 导师:林家浩教授 3. 1993/9–1997/7, 大连理工大学, 工程力学, 学士 科研与学术工作经历 1. 2008/12-至今,大连理工大学,工程力学系,副教授 2. 2005/9-2008/12,大连理工大学,工程力学系,讲师 3. 2015/9-2016/9,利物浦大学,工程动力学中心,访问学者 4. 2003/9-2005/7,重庆交通科研设计院,桥梁工程结构动力学国家重点实验室,博士后