
Overview
Background
C.M. Wang joined the School of Civil Engineering, University of Queensland (UQ) in January 2017 as the Transport and Main Roads (TMR) Chair Professor of Structural Engineering. He graduated from Monash University in Civil Engineering with a First Class Honours in 1978 and was awarded M.Eng.Sc. and Ph.D. degrees from the same university in 1980 and 1982, respectively. Prior to joining UQ, Professor Wang held the positions as the Director for the Engineering Science Programme and the Director for the Global Engineering Programme, at the Faculty of Engineering of the National University of Singapore. Additionally, he was the Vice-Dean of Undergraduate Programmes of NUS Faculty of Engineering and the Associate Director of the Centre for Development in Teaching and Learning, NUS. He is also the Adjunct Professor in the Department of Civil Engineering, Monash University, Australia and was elected as Monash Civil Engineering Alumnus of the Year 2015 for his significant contributions to the engineering profession.
Professor Wang is a Chartered Structural Engineer, Fellow of Australian Academy of Technology and Engineering, Member of European Academy of Sciences and Arts, Fellow of Academy of Engineering Singapore, Fellow of Institution of Engineers Singapore, Fellow of Institution of Structural Engineers and Fellow of Society of Floating Solutions (Singapore). He was the Chairman of the IStructE Singapore Regional Group and the IStructE Council Member for 12 years. He was awarded 2009 Lewis Kent Award, 2014 Keith Eaton Award and IES Outstanding Volunteer Awards 2011 and 2008 for his outstanding leadership and significant contributions to IStructE and IES. Currently, he is Chairman of International Steering Committee of EASEC, Vice President of Society of Floating Solutions Singapore, member of International Advisory Committee of RILS and Senior Fellow of PolyU Academy for Interdisciplinary Research, Hong Kong PolyU. He is founding member of International Engineering Science Consortium that comprises 9 premier universities (UC Berkeley, Cornell Univ, Univ of Toronto, Osaka University, KTH Sweden, UCL, NUS, UQ, Auckland Univ).
Professor Wang is a highly sought after keynote speaker in international conferences. He has given over 50 keynote presentations and many seminars on very large floating structures, structural modeling and analysis in many countries. He has won a number of research awards such as 2019 Nishino Medal, 2019 JN Reddy Medal and best paper awards. He has provided consulting services and served as an expert in structures and very large floating structures to many public and private organizations, including JTC Corporation, Maritime and Port Authority of Singapore, Housing Development Board, Defence Science and Technology Agency, Jurong Consultants, Surbana International and Singapore Cruise Centre.
Availability
- Professor Chien Ming Wang is:
- Available for supervision
Fields of research
Qualifications
- Doctor of Philosophy, Monash University
- Fellow, Academy of Engineering Singapore, Academy of Engineering Singapore
- Fellow, Australian Academy of Technology and Engineering, Australian Academy of Technology and Engineering
- Fellow, Institution of Engineers Singapore, Institution of Engineers Singapore
- Fellow, Institution of Structural Engineers, Institution of Structural Engineers
- Fellow, The Society of Floating Solutions Singapore, The Society of Floating Solutions Singapore
Research interests
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Offshore floating fish farms
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Infrastructure for offshore seaweed farms
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Development of New Structural Models for Analysis
Research impacts
Prof CM Wang’s research interests are wide; covering areas in structural stability, vibration, optimization, plates/shells, nano-structures, computational mechanics and large floating structures. He has made significant contributions to these areas by authoring over 500 journal papers, 6 books, editing 4 books and several conference proceedings. His publications have garnered over 26,000 citations and his h-index is 79 according to Google Scholar. He has been listed as a most cited researcher in civil engineering in the Shanghai Ranking for academic subjects 2016.
Prof Wang is globally renowned for his work on very large floating structures (VLFS) that find many applications such as floating oil storage facilities, bridges, restaurants, and piers/berths. He holds patents on a new type of pontoon, an offshore floating bunker supply base, a floating fuel storage facility and an aquaculture structure. Prof Wang co-edited the first book on VLFS and published extensively on the subject. He has been invited to give keynote lectures/courses on VLFS in more than a dozen countries. He is the principal investigator of several research and industrial projects on VLFS that amounts to over S$10 million. He was the chief consultant for the floating platform at Marina Bay and the floating wetlands at Punggol Waterways. His work on floating wetlands bagged the Minister of National Development R&D (Special Mention) Award 2017 and the IStructE Singapore Structural Award for Sustainability 2016. Prof Wang worked with NUS and SINTEF researchers to develop a new floating hydrocarbon storage facility and floating bridges for deployment in Singapore waters. He was awarded $688,000 from ARC to conduct research on a novel floating forest to protect fragile shorelines of Australia and another $433,000 to do research on the next generation offshore blue aquaculture. He is currently the leader of the offshore engineering and technology program of the Blue Economy CRC.
Prof Wang is also famous for his discovery of exact relationships between shear deformable beam/plate theories and their classical counterparts. His papers and seminal book on shear deformable beams/plates contain these amazing relationships that help unlock the exact solutions for shear deformable beams/plates. Another notable contribution of Prof Wang is the use of Eringen’s nonlocal theory for structural analysis that allows researchers to incorporate the effect of small length scale that is important when dealing with nanostructures. His early papers on the nonlocal beam theory have opened up a new research direction and spurred the publication of hundreds of papers on the subject. He has also contributed to the development of continuum models for carbon nanotubes, graphene and graphyne sheets. The study also involves calibrating the small length scale parameter in the nonlocal models by using Molecular Dynamic Simulations, experimental results and microstructured beam models or Hencky bar chain models.
Prof Wang's early research papers on flexural-torsional buckling of monosymmetric I-beams were cited in structural stability textbooks and his buckling formulas for these beams have been adopted in design codes. His proposed "Shooting-Optimization Technique" for solving two-point boundary value problems has been applied to solve all kinds of problems such as variable arc-length beam problems, biofilm problems, undersea cables, and fibre problems. His work on the automation of the Ritz method for plate analysis has drawn much interest from the research community. Many researchers have adopted the method for their plate analyses.
Professor Wang has supervised 28 PhD students, 20 MEng students and 12 Postdoc Fellows, many of them now holding leading positions in universities and engineering practice.
Works
Search Professor Chien Ming Wang’s works on UQ eSpace
2004
Journal Article
Buckling of a weakened column
Wang C.Y., Wang C.M. and Aung T.M. (2004). Buckling of a weakened column. Journal of Engineering Mechanics, 130 (11), 1373-1376. doi: 10.1061/(ASCE)0733-9399(2004)130:11(1373)
2004
Journal Article
Plastic buckling of simply supported, polygonal Mindlin plates
Wang, C. M. (2004). Plastic buckling of simply supported, polygonal Mindlin plates. Journal of Engineering Mechanics, 130 (1), 117-122. doi: 10.1061/(ASCE)0733-9399(2004)130:1(117)
2003
Journal Article
Exact buckling solutions for rectangular plates under intermediate and end uniaxial loads
Xiang, Y., Wang, C. M. and Kitipornchai, S. (2003). Exact buckling solutions for rectangular plates under intermediate and end uniaxial loads. Journal of Engineering Mechanics, 129 (7), 835-838. doi: 10.1061/(ASCE)0733-9399(2003)129:7(835)
2003
Journal Article
Fundamental frequencies of circular plates with internal elastic ring support
Wang, C.Y. and Wang, C.M. (2003). Fundamental frequencies of circular plates with internal elastic ring support. Journal of Sound and Vibration, 263 (5), 1071-1078. doi: 10.1016/S0022-460X(03)00275-X
2003
Journal Article
Ritz buckling analysis of rectangular plates with internal hinge
Xiang, Y., Wang, C. M., Wang, C. Y. and Su, G. H. (2003). Ritz buckling analysis of rectangular plates with internal hinge. Journal of Engineering Mechanics, 129 (6), 683-688. doi: 10.1061/(ASCE)0733-9399(2003)129:6(683)
2003
Journal Article
Stability criteria for Euler columns with intermediate and end axial loads
Wang, C. M., Wang, C. Y. and Nazmul, I. M. (2003). Stability criteria for Euler columns with intermediate and end axial loads. Journal of Engineering Mechanics, 129 (4), 468-472. doi: 10.1061/(ASCE)0733-9399(2003)129:4(468)
2003
Journal Article
Shape control of statically indeterminate laminated beams with piezoelectric actuators
Ajit A., Ang K.K. and Wang C.M. (2003). Shape control of statically indeterminate laminated beams with piezoelectric actuators. Mechanics of Advanced Materials and Structures, 10 (2), 145-160. doi: 10.1080/15376490306736
2003
Journal Article
Vibration of Timoshenko beams with internal hinge
Lee, Y. Y., Wang, C. M. and Kitipornchai, S. (2003). Vibration of Timoshenko beams with internal hinge. Journal of Engineering Mechanics, 129 (3), 293-301. doi: 10.1061/(ASCE)0733-9399(2003)129%3A3(293)
2003
Journal Article
Buckling of columns with an intermediate elastic restraint
Wang, Chien Ming and Nazmul, I. M. (2003). Buckling of columns with an intermediate elastic restraint. Journal of Engineering Mechanics, 129 (2), 241-244. doi: 10.1061/(ASCE)0733-9399(2003)129:2(241)
2003
Conference Publication
Elastic buckling of cylindrical shells under axial compression and body-forces
Lim, C. W., Wang, Chien Ming and Kitipornchai, S. (2003). Elastic buckling of cylindrical shells under axial compression and body-forces. International Symposium on New Perspectives for Shell and Spatial Structures, Taipei, Taiwan, 22–25 October 2003.
2003
Journal Article
Optimization of submerged funicular arches
Wang, CM and Ler, CW (2003). Optimization of submerged funicular arches. Mechanics Based Design of Structures and Machines, 31 (2), 181-200. doi: 10.1081/SME-120020290
2003
Conference Publication
On computation of stress resultants for plates with free edges using the Ritz method
Wang, Chien Ming and Xiang, Y. (2003). On computation of stress resultants for plates with free edges using the Ritz method. 9th International Conference on Civil and Structural Engineering Computing, Egmond-aan-Zee, The Netherlands, 2-4 September 2003. Stirlingshire, United Kingdom: Civil-Comp Press. doi: 10.4203/ccp.77.40
2003
Conference Publication
Hydroelastic Analysis of Pontoon-Type Circular VLFS
Watanabe E., Utsunomiya T., Wang C.M. and Xiang Y. (2003). Hydroelastic Analysis of Pontoon-Type Circular VLFS. Proceedings of the Thirteenth (2003) International Offshore and Polar Engineering Conference, Honolulu, HI, May 25, 2002-May 30, 2003. INTERNATIONAL SOCIETY OFFSHORE& POLAR ENGINEERS.
2003
Conference Publication
New vistas for student exchange programmes
Pakir, A., Wang, Chien Ming and Liew, A. C. (2003). New vistas for student exchange programmes. ISANA 14th International Educational Association Annual Conference, Yeppoon, QLD, Australia, 8-10 October 2003.
2003
Conference Publication
Sea space utilization in Singapore
Wang, Chien Ming, Shankar, J. N., Mao, W. Y. and Hee, A. M. (2003). Sea space utilization in Singapore. International Symposium on Ocean Space Utilisation Technology, Tokyo, Japan, 28-31 January 2003.
2002
Journal Article
Buckling of vertical cylindrical shells under combined end pressure and body force
Lim, C. W., Ma, Y. F., Kitipornchai, S, Wang, C. M. and Yuen, R. K. K. (2002). Buckling of vertical cylindrical shells under combined end pressure and body force. Journal of Engineering Mechanics, 129 (8), 976-884. doi: 10.1061/(ASCE)0733-9399(2003)129:8(876)
2002
Journal Article
Optimal location of a cutout in rectangular Mindlin plates for maximum fundamental frequency of vibration
Wang, C. M. and Wu, W. Q. (2002). Optimal location of a cutout in rectangular Mindlin plates for maximum fundamental frequency of vibration. Structural and Multidisciplinary Optimization, 24 (5), 400-404. doi: 10.1007/s00158-002-0252-9
2002
Journal Article
Stability criteria for Timoshenko columns with intermediate and end concentrated axial loads
Wang, C. M., Ng, K. H. and Kitipornchai, S. (2002). Stability criteria for Timoshenko columns with intermediate and end concentrated axial loads. Journal of Constructional Steel Research, 58 (9), 1177-1193. doi: 10.1016/S0143-974X(01)00071-2
2002
Journal Article
Optimal design of stepped circular plates with allowance for the effect of transverse shear deformation
Chung, K. C. and Wang, C. M. (2002). Optimal design of stepped circular plates with allowance for the effect of transverse shear deformation. International Journal of Mechanical Sciences, 44 (6), 1163-1177. doi: 10.1016/S0020-7403(02)00036-X
2002
Journal Article
Buckling of standing vertical plates under body forces
Wang, C. M., Xiang, Y. and Wang, C.Y. (2002). Buckling of standing vertical plates under body forces. International Journal of Structural Stability and Dynamics, 2 (2), 151-161. doi: 10.1142/S0219455402000531
Funding
Current funding
Supervision
Availability
- Professor Chien Ming Wang is:
- Available for supervision
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Supervision history
Current supervision
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Doctor Philosophy
Offshore seaweed and renewable energy farms: solutions for integration and co-location
Principal Advisor
Other advisors: Associate Professor David Callaghan
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Doctor Philosophy
Development of Hencky bar chain model for buckling and vibration analyses and optimisation of arch structures
Principal Advisor
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Doctor Philosophy
Designing self-healing concrete using molecular dynamics simulations
Principal Advisor
Other advisors: Dr Shujian Chen
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Doctor Philosophy
Structural performance of cardboard folded sandwich structures for ultra-low-cost emergency shelters
Associate Advisor
Other advisors: Associate Professor Joe Gattas
Completed supervision
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2023
Doctor Philosophy
Development of a passive solution for mitigating sloshing in a floating rigid closed containment aquaculture tank in waves
Principal Advisor
Other advisors: Professor Tom Baldock
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2022
Doctor Philosophy
Influence of Geometric Characteristics on Wind Characteristics behind Floating Forest
Principal Advisor
Other advisors: Associate Professor Matthew Mason
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2022
Doctor Philosophy
Semi-analytical solutions for hydrodynamic behaviours of floating polygonal platforms and ring breakwaters
Principal Advisor
Other advisors: Emeritus Professor Sritawat Kitipornchai
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2022
Doctor Philosophy
Structural Dynamics under Moving Loads: Inclined Structure, MINE Method, and Structural Health Monitoring
Principal Advisor
Other advisors: Emeritus Professor Sritawat Kitipornchai
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2021
Doctor Philosophy
Numerical and Experimental Studies of a Novel Porous Breakwater
Principal Advisor
Other advisors: Emeritus Professor Sritawat Kitipornchai
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2021
Doctor Philosophy
Development of Integrated Offshore Fish Cage and Floating Spar Wind Turbine
Principal Advisor
Other advisors: Emeritus Professor Sritawat Kitipornchai
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2020
Doctor Philosophy
Extracting Wave Energy while Reducing Hydroelastic Response of Very Large Floating Structures
Principal Advisor
Other advisors: Dr Dorival Pedroso
Media
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