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1 Leung, RCK (ed.), Ciappi, E, De Rosa, S, Hambric, SA, Clair, V, Maxit, L & Totaro, N 2021, 'Flinovia -- Flow Induced Noise and Vibration Issues and Aspects III', Springer International Publishing AG, Switzerland. https://doi.org/10.1007/978-3-030-64807-7
2 Ding, Z & Jiao, Z 2021, 'Overview and Introduction: Multi-Scaled Metallic Parts and Structures'. in Encyclopedia of Materials: Metals and Alloys. Elsevier, pp. 19-36. https://doi.org/10.1016/B978-0-12-819726-4.00154-X
3 Ding, Z & Jiao, Z 2021, 'Metallic materials for making multi-Scaled metallic parts and structures', in Encyclopedia of Materials: Metals and Alloys. pp. 19-36. https://doi.org/10.1016/B978-0-12-819726-4.00007-7
4 Akbar, MA & Wong, WO 2021, 'A Pendulum Type Particle Impact Damper', in X Jing, H Ding & J Wang (eds), Advances in Applied Nonlinear Dynamics, Vibration and Control -2021. ICANDVC 2021. Lecture Notes in Electrical Engineering, vol 799. vol. 799, Springer Singapore, pp. 739 - 750.
5 Yin, Q & Yao, H 2021, 'Computational study on the effects of mechanical constraint on the performance of silicon nanosheets as anode materials for lithium-ion batteries', in Silicon Anode Systems for Lithium-Ion Batteries. Elsevier, pp. 95-118. https://doi.org/10.1016/B978-0-12-819660-1.00006-2

 
1 Fu, J & Yao, H 2020, 青鱼咽齿力学与仿生. in X Feng, H Zhao & B Li (eds), 仿生力学前沿. Shanghai Jiao Tong University Press, pp. 279-306.

 
1 AN, L., “Recycling of Spent Lithium-Ion Batteries: Processing Methods and Environmental Impacts”, Springer, ISBN: 978-3-030-31833-8 (2019).
2 PAN, Z.F. and AN, L., “Removal of Heavy Metal from Wastewater Using Ion Exchange Membranes”, In Applications of Ion Exchange Materials in the Environment, Springer, Cham, pp. 25-46 (2019).
3 LI, H. and FU, M.W., “Deformation-Based Processing of Materials: Behavior, Performance, Modelling, and Control”, Elsevier, 11 March 2019, ISBN 9780128143810, 350pp (2019).
4 CHI, T.X. and LIU, Y., “Spectral Correlation Study of Skin Blood Flow Oscillation”, Symposium on Fluid-Structure-Sound Interactions and Control, Springer, ISSN 2195-4356, pp.275-280 (2019).
5 LIU, S.H., CHI, T.X., TIAN, S., SU, Z.D., LIU, Y. and LUO, X.Y., “Numerical Study of Fluid-Structure Interaction of Microvasculature”, Symposium on Fluid-Structure-Sound Interactions and Control, Springer, ISSN 2195-4356, pp.257-261 (2019).
6 HONG, M. and SU, Z., “Characterizing Fatigue Cracks Using Active Sensor Networks”, Nonlinear Ultrasonic and Vibro-Acoustical Techniques for Nondestructive Evaluation, edited by KUNDU, T., Cham: Springer Nature, ISBN: 978-3-319-94474-6, pp.699-739 (2019).
7 WANG, C., DUAN, F. and TANG, H., “Active Control of Two-dimensional Vortex-induced Vibration of a Circular Cylinder Using a Pair of Synthetic Jets”, Fluid-Structure-Sound Interactions and Control, Springer, ISBN 978-981-10-7620-6, pp.269-274 (2019).
8 YAO, H. and FU, J., “青鱼咽齿力学与仿生”, 仿生力学前沿edited by FENG X.Q. (in Chinese)

 
1 AN, L.and ZHAO, T.S., “Anion Exchange Membrane Fuel Cells: Principles, Materials and Systems”,Lecture Notes in Energy, Springer, ISBN: 978-3-319-71370-0 (2018).
2 GENG, P. andCHEN, G., “Electrically and Electrochemically Assisted Nanofiltration: A Promising Approach for Fouling Mitigation”,Nanofiltration, Ed. Muhammad Akhyar Farrukh, IntechOpen, Chapter 7 (2018).
3 LAI, X.M.,FU, M.W.. and PENG, L.F., “Sheet Metal Meso- and Microforming and Their Industrial Applications”,Taylor & Francis Group, Page count: 29 (2018).
4 LI, H. andFU, M.W., “Deformation Based Processing of Materials: Behavior, Performance, Modelling, and Control”,Elsevier, November (2018).
5 JING, X.J.and VAKAKIS, A.F., “Exploring Nonlinear Benefits in Engineering”,a special issue in Mechanical Systems and Signal Processing(2018).
6 CIAPPI, E., DE ROSA, S., FRANCO, F., GUYADER, J.L., HAMBRIC, S.,LEUNG, R.C.K.and HANFORD, A.D., “Flinovia-Flow Induced Noise and Vibration Issues and Aspects II”,Springer, ISBN 978-3-319-76779-6 (2018).
7 XIAO, L.L., YAN, W.W.,LIU, Y., CHEN, S. and FU, B.M., “Modeling Cell Adhesion and Extravasation in Microvascular System”,In Molecular, Cellular, and Tissue Engineering of the Vascular System, Springer, Cham, pp. 219-234 (2018).
8 SU, Z., YUAN, S. and SOHN, H., “Proceedings of the 7th Asia Pacific Workshop on Structural Health Monitoring (APWSHM-2018)”,Bad Breisig: NDT.net, ISBN: 978-3-00-060359-4, 1241pp (2018).
9 VYAS, A., “Internationalization of Higher Education in Hong Kong: Policies, Development and Emerging Trends”,in A. Farazmand (Ed.), Global Encyclopedia of Public Administration and Public Policy. Switzerland: Springer International Publishing AG, 15pp (2018).
10 YAO, H.and FU, J. “青鱼咽齿的仿生力学研究”,in book “生物材料与仿生力学”Edited by FENG X.Q. (in Chinese) (2018).

1 LAI, X.M., FU, M.W. and PENG, L.F., “Sheet Metal Meso- and Microforming and Their Industrial Applications”, Taylor & Francis Group, June (2017)

1 ZHOU, K. and CHAN, T.L., “Chapter 1: Operator Splitting Monte Carlo Method for Aerosol Dynamics”, Book Series: Aerosols- Science and Case Studies, Edited by Konstantin Volkov, InTechOpen, 204 pages, ISSN: 978-953-51-2844-1 (2016).
2 FU, M.W., “Design and Development of Metal Forming Processes and Products Aided by Finite Element Simulation”, Springer-Verlag London Ltd., ISBN: 978-3-319-46462-6, Pages: 320 (2016).
3 ZHOU, Y., LUCEY, A.D., LIU, Y. and HUANG, L.X., “Fluid-Structure-Sound Interactions and Control”, Springer Berlin Heidelberg, DOI: 10.1007/978-3-662-48868-3 (2016).
4 SHAO, J. C., LIU, Y. and SU, Z.D., “Effect of Vasomotion on Blood Flow Distribution in Microvessels”, In Fluid-Structure-Sound Interactions and Control, Springer Berlin Heidelberg, pp.295-299 (2016).
5 YANG, H., ZHOU, Y., ZHU, Y. and LIU, Y., “Flapping Motion of a Turbulent Jet Under the Asymmetric Excitation of Two Unsteady Minijets”, In Fluid-Structure-Sound Interactions and Control, Springer Berlin Heidelberg, pp.259-264 (2016).
6 SU, Z. and HONG, M., “Nonlinear Ultrasonics for Health Monitoring of Aerospace structures Using Active Sparse Sensor Networks”, Structural Health Monitoring (SHM) in Aerospace Structures (Woodhead Publishing Series in Composites Science and Engineering: Number 68), edited by Yuan, F.-G., Cambridge: Woodhead Publishing Ltd., ISBN: 978-0-08-100148-6, pp. 353-392 (2016).

1 ZHOU, K., XIAO, M., JIANG, X. andCHAN, T.L., “DNS of Differential Thermal and Mass Diffusions in Free Turbulent Shear Flows”, Book Series: Procedia Engineering, Frontiers in Fluid Mechanics Research, Elsevie Science BV, Netherlands, Vol. 126, pp.113-117 (ISSN: 1877-7058) (2015).
2 WANG, Z.B.,CHOY, Y.S.and XI, Q., “Fan Noise Control by a Flexible Casing Structure”, Fluid Structure Sound Interaction and Control, Springer Verlag Berlin Heidelberg, New York, ISBN: 978-3-662-48866-9, pp.63-68 (2015).
3 JING, X.J. and LANG, Z.Q., “Frequency Domain Analysis and Design of Nonlinear Systems Based on Volterra Series Expansion — A Parametric Characteristic Approach”, Springer International Publishing Switzerland, XV, 331p., ISBN: 978-3-319-12390-5 (2015).
4 TANG, H.and ZHONG, S., “Simulation and Modeling of Synthetic Jets”, Chapter 4 in TH New and SCM Yu (Eds.) Vortex Rings and Jets – Recent Developments in Near-Field Dynamics, Fluid Mechanics and Its Applications, Springer, Chapter, Vol. 111, pp.93-144 (DOI: 10.1007/978-981-287-396-5_4) (2015).
5 YAO, H., “Bio-inspired Mechanics and Materials”, Frontier of Applied mechanics, Zishun LIU (ed.), Imperial College Press, Singapore (ISBN: 978-1-78326-683-8).
6 CHEN, Y.M., LI, X.Y.,ZHOU, L.M., MAI, Y.W. and HUANG, H.T., “High-Performance Electrospun Nanostructured Composite Fiber Anodes for Lithium-ion Batteries”, Chapter 21 in Multi-Functionality of Polymer Composites: Challenges and New Solutions, Editors by Klaus Friedrich and Ulf Breuer, Elsevier, pp.662-689 (2015).

1 LEUNG, R.C.K., FAN, H.K.H. and LAM, G.C.Y., “A Numerical Methodology for Resolving the Aeroacoustic-Structural Response of Flexible Panel”, Flinovia – Flow Induced Noise and Vibration Issues and Aspects, Springer, Chapter 15, pp.321–342 (2014).
2 LIU, Z.G.,LIU, Y.and LU, J., “The Numerical Simulation of Fluid-Structure Interaction on a Simple Cluster in an Axial Flow”, in the book edited by ZHOU, LIU, HUANG & HODGES: Fluid-Structure-Sound Interactions and Control,Springer Berlin Heidelberg. Book, DOI: 10.1007/978-3-642-40371-2. ISBN: 978-3-642-40370-5 (Print) 978-3-642-40371-2 (Online) (2014).
3 TANG, H., SALUNKHE, P., DU, J., and WU, Y., “Active Flow Control over a Wing Model Using Synthetic-jet-actuator Arrays”, in ZHOU, Y, LIU, Y, HUANH, L., HODGES, D.H. (Eds.), Fluid-Structure-Sound Interactions and Control, Springer, DOI: 10.1007/978-3-642-40371-2_16, pp.115-122 (2014).
4 WU, Y. and TANG, H., “POD Study of a Turbulent Boundary Layer over a Rough Forward-facing Step”, in ZHOU, Y., LIU, Y., HUANH, L., HODGES, D.H. (Eds.), Fluid-Structure-Sound Interactions and Control, Springer, DOI: 10.1007/978-3-642-40371-2_11, pp.83-88 (2014).
5 WONG, E.T.T., CHAN, M.C. and SZE, L.K.W., “Spreadsheet Modeling of Data Center Hotspots. In K. Mehdi(Ed.)”, Encyclopedia of Information Science and Technology, Hershey, Third Edition, pp.1207-1219, PA: IGI Global (2014).
6 YAO, H., “Bio-inspired Mechanics and Materials”, Frontier of Applied mechanics, Zishun LIU (ed.), Imperial College Press, Singapore, pp.125-126 (ISBN: 978-1-78326-683-8) (2014).

1 CHENG, L., LU, Z.B. and HALIM, D., “Active Control of Flow-Induced Acoustic Resonance Inside Downstream Cavities Through Surface Perturbation”, New Trends in Smart Technologies, Edited by Christian Boller, Hartmut Janocha (Eds.), Fraunhofer Verlag, ISBN 978-3-8396-0577-6, pp.205-222 (2013).
2 CHEN, Y., JING, X. and CHENG, L., “Frequency Domain Analysis and Design of Nonlinear Vehicle Suspension Systems”, (Chapter 12) in Handbook of Vehicle Suspension Control Systems, Edited by Honghai Liu, Huijun Gao & Ping Li, IET control book series, ISBN: 978-1-84919-633-8, (2013).
3 FU, B.M. and LIU, Y., “Transport of Water and Solutes across Endothelial Barriers and Tumor Cell Adhesion in the Microcirculation”, (Chapter 4) in Transport in Biological Media, Edited by Becker & Kuznetsov, Elsevier, ISBN: 9780124158245 (2013).

1 JING, X.J.,“Vibration Control by Exploiting Nonlinear Influence in the Frequency Domain”, Advances on Analysis and Control of Vibrations – Theory and Applications edited by Mauricio Zapateiro de la Hoz and Francesc Pozo (Chapter 1), InTech, ISBN 978-953-51-0699-9 (2012).
2 LAM, G.C.Y.,LEUNG, R.C.K.and TANG, S.K., “Direct Aeroacoustic Simulation of Merging Flow in T-Duct”, In C. Meskell, G. Bennett, eds., Flow-Induced Vibration, Trinity College, Dublin, Ireland, ISBN 978-0-9548583-4-6, pp.235-242 (2012).
3 WONG, T.T.and SZE, L.K., “A Neuro-Fuzzy Partner Selection System for Business Social Networks”, In M. Cruz-Cunha, P. Gonçalves, N. Lopes, E. Miranda, & G. Putnik (Eds.), Handbook of Research on Business Social Networking: Organizational, Managerial, and Technological Dimensions, pp.98-118. Hershey, PA: Business Science Reference (2012).
4 YAO, H.,GAO, H., “Mechanics of Self-Similar Hierarchical Adhesive Structures Inspired by Gecko”, Chapter 10 in book Structural Interfaces and Attachments in Biology, S. Thomopoulos, V. Birman, G. M. Genin (eds.), Springer, New York, ISBN 978-1-4614-3316-3 (2012).

1 YU, K.F.,LEUNG, R.C.K.,LU, Z.B.,CHENG, L., CHAN, H.Y.H., “Confinement Effects on Flows Past an In-Duct Rectangular Bluff Body with Semi-Circular Leading Edge”, in J. Li, S. Fu, ed., Recent Progresses in Fluid Dynamics Research, Vol. 1376, American Institute of Physics, New York, U.S.A., ISBN 978-0735409361, pp.154-156 (2011).
2 HO, C.Y.,LEUNG, R.C.K.,ZHOU, K., LAM, G.C.Y., JIANG, “One-Step Direct Aeroacoustic Simulation Using Space-Time Conversation Element and Solution Element Method”, in J. Li, S. Fu, ed., Recent Progresses in Fluid Dynamics Research, Vol. 1376, American Institute of Physics, New York, U.S.A., ISBN 978-0735409361, pp.218-220 (2011).
3 WONG, I.Y.W.,LEUNG, R.C.K., LAW, A.K.Y., “Unsteady Flow Dynamics and Acoustics of Two-Outlet Centrifugal Fan Design”, in J. Li, S. Fu, ed., Recent Progresses in Fluid Dynamics Research, Vol. 1376, American Institute of Physics, New York, U.S.A., ISBN 978-0735409361, pp.467-469 (2011).
4 TONG, C.K., andWONG, E.T.,“Picture Archiving and Communication System for Public Healthcare”, In I. Management Association, USA (Ed.), Clinical Technologies: Concepts, Methodologies, Tools and Applications, Hershey, PA: Medical Information Science Reference, pp.2173-2182 (2011).

1 LAU, K.T.and LENG, J.S., “Multifunctional Polymer Nanocomposites” Taylor & Francis / CRC Press, USA, 4670 pages. ISBN: 9781439816820 (2010).
2 TANG, Q.,SHI, S.Q.,ZHOU, L.M. and LU, J., “Dip-Pen Nanolithography”, Chapter in Encyclopedia of Nanoscience and Nanotechnology, ISBN: 1-58883-159-0 (2010).
3 ALAM, M.M.,ZHOU, Y.and YANG, H., “Aerodynamics of an Airfoil at Ultra-Low Reynolds Number”, Progress in Turbulence III (ed. J Peinke, M Oberlack & A Talamelli), ISBN 978-3-642-02224-1, Springer-Verlag, pp.79-82 (2010).

1 LAU, K.T., “Carbon Nanotube Polymer Composites. Nnao- and Biocomposites”. Taylor & Francis / CRC Press, USA, ISBN: 9781420080278, pp.1-22 (2009).
2 LIU, W.C., MENG, F.Y. andSHI, S.Q., “Tensile Deformation Behavior of Carbon Nanotube Junctions”. Nanotech 2009, Nano Science & Technology Institute, Vol. 3, ISBN: 978-1-4398-1784-1, pp.450-453 (2009).
3 XU, C.H.,SHI, S.Q. and SURYA, C., “Chapter 30. Gas Sensors Based on One Dimensional Nanostructures”. Handbook of Nanoceramics and Their Based Nanodevices, ISBN: 1-58883-114-0 (2009).
4 SU, Z., WANG, X. and YE, L., “Data Fusion of Multiple Signals from the Sensor Network”. In Encyclopedia of Structural Health Monitoring, ISBN: 978-0-470-05822-0, pp.697-708 (2009).
5 WANG, X. andSU, Z., “Design of Active Sensor Network and Multilevel Data Fusion”. In Encyclopedia of Structural Health Monitoring, ISBN: 978-0-470-05822-0, pp.1301-1314 (2009).

1 FU, M.W. andLU, J., “Simulation-Enabled Approach for Defect Prediction and Avoidance in Forming Product Development”. In Xiu-Tian Yan, Chengyu Jiang and Benoit Eynard, eds., Advanced Design and Manufacture to Gain a Competitive Edge-New Manufacturing Techniques and their Role in Improving Enterprise Performance, Springer, London, ISBN 978-1-84800-240-1, pp.3-12 (2008).
2 FU, M.W., “Design Information Revealed by CAE Simulation for Casting Product Development”. In Xiu-Tian Yan, William J. Ion and Benoit Eynard, eds., Global Design to Gain a Competitive Edge-An Holistic and Collaborative Design Approach based on Computational Tools, Springer, London, ISBN 978-1-84800-238-8, pp.323-332 (2008).
3 CHAN, W.L.,FU, M.W.,LU, J., “Tooling Design and Fatigue Life Evaluation via CAE Simulation for Metal Forming”. In Xiu-Tian Yan, William J. Ion and Benoit Eynard, eds., Global Design to Gain a Competitive Edge-An Holistic and Collaborative Design Approach based on Computational Tools , Springer, London, ISBN 978-1-84800-238-8, pp.711-720 (2008).
4 WONG, T.T., “PMA Supplier Selection Using the Mahalanobis Taguchi System”. In G.D. Putnik & M.M. Cunha (Eds), Encyclopedia ofNetworked and Virtual Organizations, pp.1230-1237, Hershey: Information Science Reference (2008).
5 SUN, J., TAO, J., LI, Y. andWONG, T.T., “A New TCP/AQM Fluid Flow Model for Complex Networks”. In LI, S., WONG, E.T.T., GOMEZ, C., LAU, A.K.T, et a1. (Eds.) Scilab Research, Development and Applications. Beijing: Tsinghua University Press, pp.59-71 (2008).
6 LI, S.,WONG, E.T.T., GOMEZ, C.,LAU, A.K.T., et a1, “Scilab -Research, Development and Applications”. Tsinghua University Press, China, ISBN 978-7-302-18475-1, 231 pages (2008).
7 LUO, L.S., KRAFCZYK, M. andLIU, Y., “Mesoscopic Methods in Engineering and Science”. Computers and Mathematics with Applications, Vol. 55, No. 7. ISSN: 0898-1221 (2008).
8 SU, Z. and YE, L., “Lamb Wave-based Quantitative Identification of Delamination in Composite Laminates”. Delamination Behaviour of Composites, edited by Sridharan, S., Cambridge: Woodhead Publishing Ltd., ISBN: 1-84569-244-6, pp. 169-216 (2008).

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