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Similitude design for the vibration problems of plates and shells: A review
Alternative TitleSimilitude design for the vibration problems of plates and shells: A review
Zhu Yunpeng1; Wang You2; Luo Zhong2; Han Qingkai3; Wang Deyou4
2017
Source PublicationFRONTIERS OF MECHANICAL ENGINEERING
ISSN2095-0233
Volume12Issue:2Pages:253-264
AbstractSimilitude design plays a vital role in the analysis of vibration and shock problems encountered in large engineering equipment. Similitude design, including dimensional analysis and governing equation method, is founded on the dynamic similitude theory. This study reviews the application of similitude design methods in engineering practice and summarizes the major achievements of the dynamic similitude theory in structural vibration and shock problems in different fields, including marine structures, civil engineering structures, and large power equipment. This study also reviews the dynamic similitude design methods for thin-walled and composite material plates and shells, including the most recent work published by the authors. Structure sensitivity analysis is used to evaluate the scaling factors to attain accurate distorted scaling laws. Finally, this study discusses the existing problems and the potential of the dynamic similitude theory for the analysis of vibration and shock problems of structures.
Other AbstractSimilitude design plays a vital role in the analysis of vibration and shock problems encountered in large engineering equipment. Similitude design, including dimensional analysis and governing equation method, is founded on the dynamic similitude theory. This study reviews the application of similitude design methods in engineering practice and summarizes the major achieve- ments of the dynamic similitude theory in structural vibration and shock problems in different fields, including marine structures, civil engineering structures, and large power equipment. This study also reviews the dynamic similitude design methods for thin-walled and composite material plates and shells, including the most recent work published by the authors. Structure sensitivity analysis is used to evaluate the scaling factors to attain accurate distorted scaling laws. Finally, this study discusses the existing problems and the potential of the dynamic similitude theory for the analysis of vibration and shock problems of structures.
KeywordLAMINATED CYLINDRICAL-SHELLS STRUCTURE SIZE INTERVAL SCALING LAWS STRUCTURAL SIMILITUDE DYNAMIC CHARACTERISTICS REINFORCED-CONCRETE EXTERNAL-PRESSURE SIMILAR MODELS IMPACT PREDICTION review dynamic similitude vibration model test
Indexed ByCSCD
Language英语
Funding Project[National Natural Science Foundation of China] ; [Excellent Talents Support Program in Institutions of Higher Learning in Liaoning Province of China] ; [Fundamental Research Funds for the Central Universities of China] ; [Key Laboratory for Precision & Non- traditional Machining of Ministry of Education, Dalian University of Technology]
CSCD IDCSCD:6025575
Citation statistics
Cited Times:2[CSCD]   [CSCD Record]
Document Type期刊论文
Identifierhttp://ir.imr.ac.cn/handle/321006/155017
Collection中国科学院金属研究所
Affiliation1.中国科学院微生物研究所
2.东北大学
3.大连大学
4.中国科学院金属研究所
Recommended Citation
GB/T 7714
Zhu Yunpeng,Wang You,Luo Zhong,et al. Similitude design for the vibration problems of plates and shells: A review[J]. FRONTIERS OF MECHANICAL ENGINEERING,2017,12(2):253-264.
APA Zhu Yunpeng,Wang You,Luo Zhong,Han Qingkai,&Wang Deyou.(2017).Similitude design for the vibration problems of plates and shells: A review.FRONTIERS OF MECHANICAL ENGINEERING,12(2),253-264.
MLA Zhu Yunpeng,et al."Similitude design for the vibration problems of plates and shells: A review".FRONTIERS OF MECHANICAL ENGINEERING 12.2(2017):253-264.
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