STALENTS合作院士:Shu-Qing Yang杨树清

2025-09-19 0 26,431

CURRICULUM VITAE

Associate Professor Shu-Qing Yang

Name Shu-Qing Yang, Fellow of IACRR
Title Associate Professor, University of Wollongong
Director of Centre for Coastal Reservoir Research
Founder and Executive Secretary of International Association for Coastal Reservoir Research (IACRR)
University Address School of Civil, Mining and Environmental Eng.,
Univ. of Wollongong, NSW 2522
Australia
Date of Birth 12 February 1964
Nationality Australia
Personal Profile
I graduated as a river engineer, having specialised in water engineering since China’s national key-project —- Three-Gorge reservoir, have acquired over 30 years’ experience in R&D of water resources development, sediment transport, turbulence, hydraulics and drag-reducing flows relating to practical hydro-environmental engineering projects.
When I studied and worked in Singapore, my research shows that Singapore is not running out of water, but our water is running out of my rivers. Gradually, the concept of coastal reservoir starts from the granted patent, journal/conference papers, to Shanghai/Malaysian applications. I now the director of Centre for Coastal Reservoir (CR) Research at Univ. of Wollongong, this is the world’s first research centre focusing on coastal reservoirs. I have worked extensively on providing specialist advice on a wide range of water related projects like the Three-Gorge-Dam project, China; South-North Water Diversion Project, China. Netravati CR project in India. Johor CR project in Malaysia. PhD projects for CRs application to for Adelaide and Brisbane are investigated.
12 years after my coastal reservoir patent was granted, and my CR book was published. I foundered the International Association for Coastal Reservoir Research (IACRR) with experts from Australia, Malaysia, India, United Kingdom, Netherlands. Its management committee includes the past presidents of IAHR, IAHS and IWRA, representing three main stream and largest international associations for hydraulics, hydrology and water resources.
For inland region’s water resources development, I proposed the SPP strategy which can mitigate its flood disaster and also convert the disastrous peak floodwater into water resources, feasibility study for its application in the Dongting Lake, China has been conducted by Changsha Univ. of Science and Technology.
I have published extensively in the field of sediment transport, and turbulence and many mechanisms are clarified like:
“Turbulent energy is always transferred towards the nearest boundary for dissipation”—a principle governs 3D channel’s boundary shear stress distribution, the most important and difficult parameter in hydraulics.
“Prandtl’s second type of secondary currents” is not caused by imbalanced turbulence in the main flow region as assumed by Einstein, but by the lateral gradient of mean velocity near a boundary;
The vertical velocity v playing an important role for streamwise velocity, if v = 0, the well-known log-law is valid; if v> 0 or upward, the log-law needs the wake function to correct; if v<0 or downward, the maximum velocity is submerged.
For different roughness elements, Einstein’s hydraulic radius division theorem is invalid, a correct form for skin friction and roughness element is obtained.
“All sediment transport theorem ignores influence of vertical velocity” causes the invalidity of sediment transport models in many complex conditions;
“Form drag of a bluff object in a moving fluid” is proportional to its wake volume, similar to Archimedes principle for the upward buoyant force, which is also caused by the pressure difference on an immersed object.

Key Achievements
 Elected Fellow of The International Association for Coastal Reservoir Research-FIACRR(2017), the first fellow by IACRR.
Honorary Credential for SPP application for Shanghai water scarcity–by Shanghai Municipal Government (2015)
Best Technical Note Award, By American Society of Civil EngineerS (ASCE-2005);
Task Committee Excellence Award by Irrigation and Drainage Council (ASCE-2005)
 Best Paper Award by APD-IAHR (2002);
 Honorary Credential for suggestions to Chinese Parliament (2002);
Founding member, World Association for Sedimentation and Erosion Research (2005);
 Best Paper Award by the “World’s Large Rivers Conference”, Vienna. 2011,
 Best Paper Award at the “Intern. Conf. on Lakes, Rivers, Groundwater & Sea, Portugal (2012)

Delivered invited lectures to over 50 institutions or societies in Singapore, South Korea, Australia, USA, Canada, China, Malaysia, India, Estonia.

Organizer/co-Chair of International conference/workshops
i)International conference in 2002—IAHR-APD;
ii)2 international workshops in Australia and Shanghai/Nanjing in 2018,
iii)one international workshop in Taiwan in 2019;
iv)special CR session in 37th IAHR world congress in Malaysia-2017;
v)special CR session in 38th IAHR world congress in Panama–2019;
vi)special CR session in 8th International conference on the application of physical modelling in coastal and port engineering and Science, May 25th-29th, 2020.
vii)the 1st IACRR world congress in 2020.

Higher Education
1985 BEng, Wuhan Univ., China
1988 MEng, Nanjing Hydr. Res. Institute, China
1997 PhD, Nanyang Technological University, Singapore

Career Summary
2019-date, Chair Prof., Wuhan Univ., China.
2017-date, Founding Director, Centre for Coastal Reservoir Research, Univ. of Wollongong, responsible for strategic planning and co-ordinating research activities of over 15 academic and research staff about CR design and its layout for coastal communities’ water supply.
2015 visiting professor, Univ. of Windsor, Canada.
2007-date, Associate Prof., Univ. of Wollongong, Australia, responsible for teaching and research on subjects like water resources engineering, hydraulics, hydrology, civil engineering design, environmental eng. design.
2006-2007, Chair Professor, South China University of Technology, Guangzhou, China.
2005-2006, Professor, Korea Maritime University, Busan, South Korea. Responsible for teaching and research on subjects like fluid mechanics, environmental eng., ballast water treatment, calculus and advanced mathematics, coastal eng.,
June 2003-Mar. 2005, Principal Research Scientist, MRC, Nanyang Technological University, Singapore.
June, 1999-June 2003. Professional Officer, Department of Civil Engineering, National University of Singapore (NUS), Singapore.
Sept. 1998-June 1999. Post-Doctoral Fellow, Dept. of Civil and Env. Engrg., Univ. of New Orleans, USA.
Sept. 1996- Aug. 1998, Engineer and Assistant Project Manager, Hyundai Engineering & Construction Corporation, and Hi-Tek Construction Company, Pte Ltd, Singapore.
Jul. 1988-July 1994, Research Engineer and team leader, Nanjing Hydraulic Research Institute, China, responsible for strategic planning, leading research projects and co-ordinating research activities of 8 academic staff and typically 30 research associates and research students.

Research project involved in:
Sedimentation in large scale reservoirs
Longshore sediment transport and beach protection;
Water quality improvement in large lakes and algal bloom prevention;

Invited Lectures

1.Coastal zone management of floodwater agriculture,联合国粮农组织, 25 Nov., 2020
2.海洋水库的研究前沿及运用展望, 中国水科院, Dec., 15, 2020
3.History of coastal reservoir technology and its potential applications in Indonesia, Indonesia government, Oct 27, 2020
4.Coastal Reservoir / Off River Storage – Case Study in Shanghai and Malaysia, Malaysia government, Dec., 2, 2020
5.An innovative solution for low carbon energy, SMahendra Eng. Colleage, India. Sept., 15, 2020.
6.Murray-Darling Basin Plan—Its Failure and Revival, School of Civil, Mining & Environ. Eng, UOW, Oct. 14, 2020.
7.Downstream Water management and its benefits to upstream. St. Martin’s Eng. Colleague.Sept. 3, 2020.
8.Droughts and Water management, a lesson from Murray-Darling River Basin, Australia. Andhra University College of Engineering, Visakhapatnam, India.
9.SPP and its application to Puyang Lake, Nanchang Univ., (scheduled, Dec. 3, 2019);
10.Multipurpose coastal reservoirs for Greater Bay Area, Zhongshan Univ., China (Nov. 29, 2019);
11.Solution to 21st century’s environmental problems—SPP, Tongji Univ., (27 Nov., 2019);
12.How to Supply Sufficient Good Quality Water to Coastal Communities like Shanghai, Shanghai Academy of environmental science, (Nov., 26, 2019, scheduled);
13.Spongy city design and Australian experience, Shanghai water research institute, (Nov. 25, 2019, scheduled);
14.Coastal reservoir design for Fangchengang, China, China Water Ministry, Nov. 22, 2019;
15.Spongy city design for Yulin, Guangxi, China water ministry, Nov. 20, 2019;
16.SPP and its application in Hunan, Hunan hydraulic design institute, China, Nov. 15, 2019;
17.How to convert Yangtze Basin into a garden without water disasters, Yangtze river investigation, survey and design institute, China, Nov. 8, 2019;
18.Qingcaosha coastal reservoir and its significance, China south water research center, Nov. 7, 2019
19.Global perspective of coastal reservoirs and outlook, Zhejiang Industrial Univ., Nov. 5, 2019.
20.Coastal reservoirs in Zhejiang, its problems and solutions, Zhejiang estuary research institute, China, Nov. 5, 2019
21.Why sediment transport is not predictable? West Lake Univ., China, Nov. 4, 2019.
22.Criticize on Reynolds time-average method in fluid mech., Sichuan Univ., China, Oct. 20, 2019.
23.Developing floodwater for dry period in inland areas, Changsha Univ. of Science and Tech., Oct. 18, 2019.
24.Water resources development in the sea, China water resources research institute, 11 Oct., 2019
25.Advances in sediment transport, Beijing Normal Univ., Oct., 10, 2019.
26.How to ensure water supply for agriculture and energy, China agricultural Univ., 10 Oct. 2019.
27.SPP and its application in China, Institute of Geographic science and natural resources research, China, Oct. 9, 2019.
28.Development of coastal reservoirs and its status, Tianjin Univ., China, Oct. 8, 2019.
29.How to convert disastrous floodwater into water resources, Wuhan Univ., China, Sept. 27, 2019.
30.Coastal Reservoir as Sustainable Solution for Water Resources to Meet SDG6, Cardiff University, UK, Sept. 24, 2019;
31.To discuss United Nations World Water Development Report (WWDR), WWWDR workshop by UNESCO, Sept. 19-20, 2019.
32.Historical review of existing coastal reservoirs and its applications (CR special session), 38th IAHR world congress, Panama, Sept. 1, 2019.
33.Review of Existing Coastal Reservoirs & Coastal Economic Corridor, Manipal University, India, Aug. 14, 2019.
34.Coastal Reservoir concept for water shortage problems, Mahendra Institute of Technology, Tamil Nadu, India, Aug. 8, 2019.
35.Water- cradle of civilization, IIT-Guwahati, July 25, 2019.
36.Coastal Reservoirs/SPP strategies for water resources management in coastal/inland areas, IIT-Guwahati, India, July 25, 2019.
37.Coastal Reservoir Infrastructure for Indian Coastal Economic Corridor, Dept. of Civil Eng., NITK, India, Aug. 7, 2019.
38.Coastal reservoir as a Sustainable Solution for Water Resources to Meet SDG6, MyCDNet national conference, Malaysia, July 9-10.
39.Possible CRs in Sydney, Dept. of Civil Eng., Western Sydney Univ. (June 3, 2019).
40.Why sediment transport is empirical and new progress?, Dept. of Hydr. Eng., NCKU, Taiwan (May, 9, 2019)
41.Coastal Reservoirs and their potential to Australia’s water resources, Dept. of Agricultural and Water Resources, Canberra, Australia. March 12, 2019
42.Pearl River Hydra. Rese. Institute (2018)
43.SA Conference 2018, Leadership in Water, Adelaide, Australia (2018);
44.Wuhan Univ., China (2018)
45.Indian Institute of Science (2017)
46.Queensland state Labour Party head office, Australia (2017);
47.AMRITA University, India (2017);
48.Mangalore Institute of Technology and Engineering, India (2017);
49.Johor Water Authority, Malaysia (2016)
50.Water Ministry (Kettha), Malaysia (2016)
51.University Technology Petronas, Malaysia (2016)
52.G&P Maritime and Water, Malaysia (2016)
53.Forest City-Country Garden, Malaysia (2016)
54.Dongting Lake Management Authority (2016)
55.Univ. of Windsor, Canada (2015)
56.East China Normal Univ., China (2015)
57.Pennsylvania State University, USA (2015)
58.Shanghai Academy of Environmental Science, China (2014)
59.Beijing Water Authority, China (2014)
60.Tianjin Water Authority, China (2014)
61.Changsha Univ. of Science and Tech., China (2014)
62.Water Ministry, China (2012)
63.Maritime Research Center, Nanyang Technological Univ., Singapore (2011).
64.Hsinghua Univ., China (2011)
65.Guangxi University for Nationalities, China (2011)
66.Sichuan Univ., China (2011)
67.Changjiang River Scientific Research Institute of Changjiang Water Resources Commission, (2006)
68.Shenzhen water resources authority (2006)
69.Tallinn University of Technology, Estonia (2006)
70.East China Sea Branch of State Oceanic Administration, China (2005),
71.Singapore Economic Development Board, Singapore (2005)

Keynote Lectures delivered at international conferences include (see publication list):
Valuing water in history from old wells, modern dams to future coastal reservoirs, World Water Day by International Water Resources Association, March 22, 2021.
Coastal reservoirs for coastal disaster mitigation, Virtual conference on disaster risk reduction, March 20, 2021.
Coastal reservoir-a technology to supply sufficient, high-quality and affordable water to industry with minimum environmental/social impact, Australia Coal mining annual conference, Feb., 2021.
Coastal Reservoir concept & Comparison of water solutions, NITK, India (CR workshop, July 22-24, 2019).
Coastal Reservoirs: its design Principles & Construction, NITK, India (CR workshop, July 22-24, 2019).
SPP Strategy for water resources management in inland areas, NITK, India (CR workshop, July 22-24, 2019).
Coastal Reservoir as Sustainable Solution for Water Resources to Meet SDG6, MyCDNet National Forum 2019: Water for Sustainable Development-What’s next, July 9-10, Kuala Lumpur, Malaysia, 2019.
Why can coastal reservoirs supply sufficient and high‐quality water to Sydney without desalination?,
Sydney Build at the IPWEA’s CIVENEX Infrastructure Expo 2019, March 15, 2019.
International CR workshop in Taiwan, ROC, (2019)
International CR workshop in Wollongong, Australia (2018)
Indian River Rejuvenation Conference, Bangalore (2017)
Indian CR workshop (2017)
IWA-APIRE, Malaysia (2017);
ANCOLD/NZSOLD conference on dams, Adelaide (2016);
International Conference on Water, Enrionment, Energy and Society, New Delhi, March, 2016;
4th Hydrology, Ocean and Atmosphere Conference, Shanghai, China (HOAC 2015);
International Conference on Water Resource and Environment, Beijing (WRE2015);
Shanghai Environment by EPB and Environmental Society, Shanghai (2014)
Atmospheric Brown Cloud Modeling and Impact workshop, Sept. 29-30, Seoul National Univ., Korea (2011)

Supervised postgraduate students:
Bu-wei Guo, MEng, 2009-2011
Dong-Hong Ding, PhD, 2011-2015
Feng Yi, MEng, 2009-2011
Hannah, Yu Han, PHD, 2010-2015
Ishraq AL-Fadhly, MEng, 2009-2011
Jianli Liu. PhD, 2011-2017
Nadeesha Chamini Dharmasiri, PhD, 2009-2013
Vo Trong Nguyen PhD, 2008-2012
Jiao Wang MEng 2008-2010
Amber Ying Zhang PhD 2014-2019
Fred Raof 2013
Woo Taek Hong MEng 2014-2015
Yahong Kuang MEng 2015-2018
Samuel Kelly MEng 2016-2018
Usman Khalil PhD 2018-2021
Zain Riaz PhD 2018-2022
Yizhuang Liu PhD 2016-2019
Qassim PhD 2017-2020
Kuncheng Zhang PhD 2017-2020
Nadeeka Miguntanna PhD 2016-2020

Key Biographical Entries
2006, Listee in Marquis , 23rd edition.
2007, included in Marquis , 24th edition.
2008, included in Marquis , 28th edition.
2006, included in “2000 Outstanding Intellectuals of the 21st Century”, International Biographical Centre, Cambridge, England.
2012, “top 100 Engineers”, ”, International Biographical Centre, Cambridge, England.
2012, “Man of the Year 2012”American Biographic Institute.

Web Profile Links
Profile on University Website: https://scholars.uow.edu.au/display/shuqing_yang
Profile on LinkedIn: https://www.linkedin.com/feed/
Profile on Researcher ID: 7406947121
Profile on Google Scholar: https://scholar.google.com.au/citations?user=FNJoCocAAAAJ&hl=en
Key to Abbreviations: www.iacrr.org

Research Grants
The funded research projects are (CI= Chief investigator, PI = Partner Investigator):
1.(CI, US$3K, 1985-1988), “An investigation of drag-reducing pipe flow”, sponsored by Nanjing Hydraulic Research Institute, China.
2.(CI, US$5K, 1988-1990), “Boundary shear stress distribution in open channels”, sponsored by Nanjing Hydraulic Research Institute, China.
3.(PI US$100K, 1992-1994), “Sediment transport in Huanghua Port”, Ministry of Power Industry. (China)
4.(CI, US$375K, 1988-1994), “Sediment transport in Three-Gorge Reservoir and Sediment Regulation in navigational channel”, Ministry of Transportation. (China).
5.(PI US$400K, 1998-1999), “Ponchartrain Ecosystem Research and Education Project”, funded by US Army Corps. (University of New Orleans, USA).
6.(PI US$1,875K, 1999-2002), “Sediment transport in Singapore coastal zone by waves and currents”. funded by Housing and Development Board. (NUS, Singapore, UNDER Prof. Shankar).
7.(PI S$625K, 2003-2005), “Sediment Transport Load in Singapore Strait”. funded by Jurong Town Corporation. (NTU, Singapore, under Prof. Tan)
8.(CI US$150K, 2006-2007), “Coastal Reservoir by Soft Dam”. funded by South China University of Technology. (China).
9.(CI, A$40K, 2008-2011), “Turbulent flows in unsteady & non-uniform flows”. Start-up Grant, University of Wollongong
10.(CI, A$15K, 2009-2010), “Turbulence characteristics & bursting phenomenon”. Near-miss Grant, University of Wollongong
11.(CI, A$20K, 2009-2010), “Turbulence Characteristics and Coherent Structures in Open Channel Flows”. Open fund, Sichuan University, (China).
12.(CI, A$650K, 2010-2013), Study of coupled water-gas-sediment (three-phase) flows through jointed and stratified rock, Australian Research Council.
13.(CI, A$20K, 2011-2012), “Algal blooms in stagnant water bodies and its control”. Open Fund. Nanjing Institute of Geography and Limnology, China.
14.(CI, A$500K, 2012-2015), “The Study of Hydrodynamic & Sediment Transport Processes and Mechanism of Beach Profile Evolution under Global Climate Change”. National Natural Science Foundation of China (NSFC).
15.(CI, A$ 35k, 2013-2014), “Mechanism of secondary currents and its role for mass and momentum transfer”. National Natural Science Foundation of China (NSFC).
16.(Co-PI, A$450k, 2019-2021), “Coastal reservoirs as a sustainable strategy for Water Security”. Scheme for Promotion of Academic and Research Collaboration, India.

PUBLICATIONS:
(a)books & Book Chapters
1.Guo J., Liong S.Y., Lin P., Shankar N.J., Cheong H.F. and Yang S.Q., (2002). “Advances in hydraulics and water engineering” (ed.) World Scientific Publishing Co. Pte Ltd, ISBN 981-238-090-6 (set), ISBN 981-238-108-2 (Vol. 1) and ISBN 981-238-109-0 (Vol. 2), Singapore.
2.Yang S.Q. (2004) “global and China’s water crisis and its solutions in the 21st century” Tianjin Univ. Press, ISBN 7-5618-2069-0 (in Chinese).
3.Yang S.Q., Qin B.Q. and Lin P.Z. (2011). “Novel SPP Water Management Strategy and Its Applications” Studies on water management issues ed. Kumarasamy. Pp239-259.
4.Yang S.Q., Liu JL, Lin PZ, and Jiang CB. (2013). Coastal Reservoir Strategy and Its Application”. IN The book “Water Resources Planning, Development and Management” (ISBN 980-953-307-678-7).
5.Yang S.Q. (2013). “Innovative Solutions for Yangtze River’s Water Crisis” In the book “Yangtze River: Geography, Pollution and Environmental Implications”. Nova Science Publishers, Inc.
6.Yang S.Q. (2018), “Coastal Reservoir—How to Develop Freshwater from the Sea Without Desalination”, In: Singh V., Yadav S., Yadava R. (eds) Water Resources Management. Water Science and Technology Library, vol 78. Springer-Nature, Singapore. Pp 121-139.
7.Yang S.Q. (2020), Coastal Reservoirs: a Technology That Can Quench Indian Thirst, Yadav, S.; Negm, A.; Yadava, R.N. (eds), Wastewater Assessment, Treatment, Reuse and Development in India. Springer-Nature, Singapore.
8.Sitharam, T.G., S.Q. Yang, R. Falconer, M. Sivakumar, B. Jones, Kolathyar, S., Lim S. (2020). Sustainable water resources development using coastal reservoirs. Elsevier.
9.Liu, J.L., Sivakumar, M., Yang, S.Q., and Jones B.G., (2020), An alternative method to solve water scarcity in Adelaide – apply a coastal reservoir strategy in the Lower Lakes, Sustainable Water Resource Development using Coastal Reservoirs, Elsevier.
10.Sivakumar, M. B.G. Jones. and S.Q., Yang (2020), Water quality considerations: from catchment to coastal reservoir, Sustainable Water Resource Development using Coastal Reservoirs, Elsevier, 33-60.
11.Yang, S.Q., Sivakumar, M. and Perez, P. (2020). Water quality and Design Considerations of Coastal Reservoirs, Sustainable Water Resource Development using Coastal Reservoirs, Elsevier.
12.Yang, S.Q., and Sivakumar, M., (2020), Preliminary feasibility study for Australian Coastal reservoirs, Sustainable Water Resource Development using Coastal Reservoirs, Elsevier.
13.Yang, S.Q. and Sivakumar, M. (2020), Water storage and design considerations of coastal reservoirs. in book: Sustainable Water Resource Development using Coastal Reservoirs, Elsevier, 11-32.
14.Yang, S.Q. and Sivakumar, M. (2020), Future directions, Sustainable Water Resource Development using Coastal Reservoirs, Elsevier.
15.Shu-Qing Yang and Ishraq AL-Fadhly (2021), Formulae of Sediment Transport in Steady Flows (Part 1), Sediment Transport – Recent Advances, Intech Open, edited by Andrew J. Manning.
16.Shu-Qing Yang (2021), Formulae of Sediment Transport in Unsteady Flows (Part 2), Sediment Transport – Recent Advances, Intech Open, edited by Andrew J. Manning.

(b) Patents
17.Yang S.Q., Z. Zhang, B.C. Ng, B.C. Ong, (2005). “Coastal Reservoirs”, Patent No. 200504653-7. (in Singapore).
18.Yang S.Q., “Water partition wall by soft pipes”, Patent No.: 03257886.5, (in China)
19.Yang S.Q. (2005), “A method of increasing the storage capacity of lake for flooding control”, Patent No.: 03130017.0 (in China)
20.Yang S.Q., “Soft curtain for water partition”, Patent No.: 03257885.7 (in China)
21.Yang S.Q., “A method for pollution control in large water bodies”, Patent No. 03129750.1 (in China).
22.Yang S.Q., “Storage and Isolation of Clean Freshwater in the sea”, Patent No. ZL200510016106.1 (in China).

(c) Papers in refereed Journals
23.Muhammad Zain Bin Riaz , Shu-Qing Yang, Muttucumaru Sivakumar, Keith Enever, Nadeeka Sajeewani Miguntanna, and Usman Khalil (2021), Direct Measurements of Hydrodynamic Forces Induced by Tidal Bores, Water Resources Research. 57, e2020WR028970. https://doi. org/10.1029/2020WR028970.
24.Yang, S.Q. (2020). “A Novel Model to Predict The Epidemics Trends And Its Application in Covid-19,” LOJ Medical Sciences, Lupine Publishers, LLC, vol. 5(4), pages 516-525, October.
25.Yang, S.Q., (2020), How to Purify a Polluted Lake Quickly—A Case Study from Shanghai, China. Journal of Water Resource and Protection, 12, 835-852.
26.Zhang K.C., Guo, P.F., Shi, M.C., Yang, S.Q., Shi, H.Y., and Chen S.Y. (2020), Application of coastal reservoir technology to improve regional natural and water supply environment: a case study of the Murray-Darling Basin in Australia. Chinese Journal of MARINE ENVIRONMENTAL SCIENCE, 39(6): 932-938. doi: 10.12111/j.mes.20190255
27.Khalil U.; Yang, S.Q.; Sivakumar M.; Enever K.; M. S. M. Z. B. Riaz (2020). Investigating an innovative sea-based strategy to mitigate coastal city flood disasters and its feasibility study for Brisbane, Australia. Water 2020, 12, 2744; doi:10.3390/w12102744.
28.Liu, Y., Yang S.Q., Jiang C., Long, Y. Deng, B. and Yan, S. (2020). Hydrological Drought in Dongting Lake Area (China) after the Running of Three Gorges Dam and a Possible Solution, Water, 12, 2713; doi:10.3390/w12102713
29.Miguntanna, N.S., Sivakumar, M., Yang, S.Q., Enever, K., Riaz, M.Z.B. (2020). Solid-flow interactions of a large aspect ratio cylinder in a shallow open channel, Physics of fluids. 32 (5), doi: 10.1063/5.000493
30.Yang, S.Q., Riaz M.Z.B., Sivakumar, M., Enever K., AND Miguntanna, N.S., (2020). Three-Dimensional velocity distribution in straight smooth channel modeled by modified log-law. J. Fluids Eng., ASME, 142 (1), 011401.
31.Miguntanna, N.; Moses, H.; Sivakumar, M.; Yang, S. Q.; Enever, K. and Riaz, M. Z. B. (2020), Re-examining log law velocity profile in smooth open channel flows, Environmental Fluid Mechanics, https://doi.org/10.1007/s10652-019-09733-6.
32.Yang S.Q. (2020), The world needs a paradigm shift from upstream water management to downstream water management. International Journal of Ocean and Coastal Eng., Special Issue on Coastal Reservoir, Vol 2, No. 3&4, DOI: 10.1142/S2529807019020019.
33.Zhang K. C. and Yang S. Q. (2020), Downstream water management strategy in Murray-Darling Basin to improve Adelaide’s water quality and agricultural output, International Journal of Ocean and Coastal Eng., International Journal of Ocean and Coastal Eng., Special Issue on Coastal Reservoir, Vol 2, No. 3&4, 1940004.
34.Yang, S.Q. and Sitharam, T.G., Sivakumar, M., Kolathayar, S. and R. Gowda (2020), Reshape Indian coastal economic corridor from coastal reservoirs, International Journal of Ocean and Coastal Eng., Special Issue on Coastal Reservoir, Vol 2, No. 3&4, DOI: 10.1142/S2529807019400037.
35.Zhang, Y., Ma Q., Gu H., Wang, J. Yang S.Q. and Sitharam T. (2020), New Conception of Coastal Reservoir in Zhoushan Islands, J. Coastal Res., In: Malvárez, G. and Navas, F. (eds.), Global Coastal Issues of 2020, Special Issue No. 95, pp. 974-978. Coconut Creek (Florida), ISSN, 0749-0208.
36.Wang, Y., Sun, Y., Yang, S.Q., Song Y., Wang, K. (2019), Research on Construction of Marine Reservoir in China. Ocean Development and Management, 38-45.
37.Yang S.Q. (2019), Formula for sediment transport subject to vertical flows”, ASCE, JHE, 145(5), 04019013, pp1-11.
38.Liu, X., Tang, L., Han, Y., Chen, J. and Yang, S. Q. (2019), Experimental study on flow resistance over rigid vegetated channel, IEEE Access, 7 93974-93985.
39.Zhang, Y., Sivakumar, M., Ramezanianpour, M., Yang, S. & Enever, K. (2019). Fluoride, iron and manganese removal from brackish groundwater by solar-powered vacuum membrane distillation. Desalination and Water Treatment, 137 58-68.
40.Liu, Y., Yang, S., Jiang, C., Long, Y. & Deng, B. (2019). Study on the effect of Dongting Lake’s shrinkage on the flooding. Shuikexue Jinzhan/Advances in Water Science, 30 (4), 485-495.
41.Liu YZ, Yang SQ, Jiang CB, Sivakumar M, Enever, K., Long Y., Deng B., Khalil, U., and Yin L., (2019), Flood Mitigation Using an Innovative Flood Control Scheme in a Large Lake: Dongting Lake, China. Applied Science, 9(12), 2465. https://doi.org/10.3390/app9122465
42.Kolathayar, S., Sitharam, T.G. and Yang, S.Q. (2019): Coastal Reservoir strategy to Enhance India’s Fresh Water Storage by Impounding River Flood Waters: A Detailed Overview, IWA, Journal of water supply.
43.Gu, H.B., Guo,Q., Lin, p., Bai, L.M., Yang,, S.Q., Sitharam, T.G., Liu, j. (2019): Feasibility Study of Coastal Reservoirs in Zhoushan Islands, China, Journal of Coastal Research, 35(4) DOI: 10.2112/JCOASTRES-D-18-00091.1
44.Deng B., Jiang, CB, Yang S.Q., Chen J. (2018): Coupled swash zone hydrodynamics and beach morphodynamics modeling I: Segmented sediment transportation model, Chinese J. of Hydr. Eng., 49(11), 1409-1419, DOI: 10.13243/j.cnki.slxb.20180342.
45.Yang S.Q. and French R. (2018). “Coastal reservoirs – an Australian water storage option”, Australian Journal of Water Resources, 21:2, 89-97. https://doi.org/10.1080/13241583.2018.1454086.
46.Deng, B., Jiang, C.B., Liu. Y. and Yang, S.Q. (2018), A close analogy with archimedes’ principle: Understanding the relationship between flow resistance and tail vortex zone of square pier through experiments. SCIENTIA SINICA Technologica, 48(11), 1167-1178.
47.Zhang Y., Sivakumar, M., Yang, S.Q., Enever, K., Ramezanianpourb, M. (2018), Application of solar energy in water treatment processes: A review, Desalination, 428, 116-145.
48.Han. Y.*, Yang. S.Q., Sivakumar. M., Qiu. L.C. (2017), Investigation of Velocity Distribution in Open Channel Flows Based on Conditional Average of Turbulent Structures. Mathematical Problems in Engineering. Volume 2017, Article ID 1458591(SCI)
49.Han, Y.,Yang, S.Q.,Qiu, L.C.(2017). Flow Resistance over submerged vegetation in ecological channel. 3rd International Conference on Water Resource and Environment (WRE 2017). Conference Series, Earth and Environmental Science. Vol.82,012069(10pp) (EI)
50.Han Y., Yang, S.Q., Sivakumar M., and Qiu, L.-C., (2017), Investigation of Velocity Distribution in Open Channel Flows Based on Conditional Average of Turbulent Structures, Mathematical Problems in Engineering, Volume 2017, Article ID 1458591, https://doi.org/10.1155/2017/1458591.
51.Yang, S.Q. (2017), “Will coastal reservoirs dominate future Australian water supplies?, Journal of Sustainable Urbanization, Planning and Progress, 2(2), 1-2)
52.Yang, S.Q. (2017), “Can floodwater in estuaries be developed as drinkable water without desalination? Journal of Sustainable Urbanization, Planning and Progress, 2(2), 2-12
53.Yang, S.Q. Smith, l. and Sivakumar M. (2017), “Assessment of social and environmental impacts of coastal reservoirs”, Journal of Sustainable Urbanization, Planning and Progress 2(2), 13-22.
54.Yang, S.Q. (2017), “Application of coastal reservoirs in China and its feasibility”, Journal of Sustainable Urbanization, Planning and Progress, 2(2), 23-33.
55.Yang S.Q. and Kelly S. (2015), “The use of coastal reservoir and SPP strategy to provide sufficient high quality water to coastal communities”. J. Geoscience and Environ. Protection. 3(5), 80-92.
56.Yang, S.Q. (2015), “Coastal reservoir-a technology that may dominate future water supply”, J. Water Resource and hydraulic Eng., 4(4), 388-397.
57.Yang S.Q. (2015), “A preliminary feasibility study for a backup water supply-coastal reservoir in Southeast Queensland, Australia”. J. Water Supply-Research and Technology 64(4), 470-480.
58.Cao, D., Chiew, Y.M., Yang, S.Q. (2015). “Injection effects on sediment transport in closed-conduit flows”. Acta Geophysica (accepted on Nov. 7, 2014).
59.Yu Han; Shu-Qing Yang; Muttucumaru Sivakumar, and Nadeesha Dharmasiri (2015). “Experimental Study on Channel Flow Division Based on Velocity Distribution”. J. Hydr. Eng., ASCE, 141(4), 06014025.
60.Yu Han, Yang S.-Q., Nadeesha Dharmasiri, Muttucumaru Sivakumar (2014). “Effects of Sample Size and Concentration of Seeding in LDA Measurements on the Velocity Bias in Open Channel Flow” Flow Measurement and Instrumentation. 38, 92-97.
61.Yang S.Q. and Ding D.H. (2014). Drag-reducing Flows in Laminar-turbulent Transition Region, J. Fluid Engineering, ASME, 136(10), 101202.
62.Yang S.Q.; Yu Han; Pengzhi Lin, Changbo Jiang and Robert Walker (2014), “Experimental Study on the Validity of Flow Region Division”, J. Hydr. Envio. Res., 8(4), 421-427.
63.Yang S.Q., Donghong Ding, (2013), “Drag reduction induced by polymer in turbulent pipe flows”. Chemical Engineering Science, 102, 200–208.
64.Liu, JL, Yang, S.Q. and Jiang CB (2013), Coastal reservoir strategy for water resources development-A review of future trend. J. Water Resource and Protection. 5, 336-342.
65.Yang S.Q., Soon Keat Tan and Xi-Kun Wang. (2012) “Mechanism of secondary currents in open channel flows”. J. of Geophysical Research, Vol. 117, F04014, doi:10.1029/2012JF002510.
66.Yang S.Q., Nadeesha, and Yu Han (2012). “Momentum Balance Method and Estimation of Boundary Shear Stress Distribution”, J. Hydra. Eng., ASCE, 138(7), 657–660.
67.Yang S.Q. (2012). Discussion of “Depth-Averaged shear stress and velocity in open –channel flows”. J. Hydr. Eng., ASCE, 138(10), 912-914.
68.Yang S.Q. and Peng-Zhi Lin (2011), “Coastal Reservoir by soft dam and its Application”, Recent Patents on Engineering. 5, 45-56.
69.Yang S.Q. and Nadeesha D. and Han Y. (2011). “Flow Resistance over Fixed roughness elements”. J. Hydr. Res., IAHR, 49 (2), 257–262.
70.Yang S.Q. (2010). “Depth-average Shear Stress and Velocity in Open-channel Flows”, J. Hydr. Eng., ASCE, 136(11), 952-958.
71.Yang S.Q. and Ferguson S. (2010). “Coastal reservoirs can harness stormwater” Water Engineering Australia. 8, 25-27.
72.Yang S.Q. (2010). Coastal dams are an alternative to desalination”. Water Engineering Australia, 11, 25.
73.Yang S.Q. and Liu P.W. (2010). “Strategy of Pollution Prevention in Taihu Lake and its Effects analysis”. J. Great Lakes Research, 36(1), 150-158.
74.Yang S.Q. (2010). “Discussion of Semi-analytical Model for Shear Stress Distribution in Simple and Compound Open Channels”. J. Hydr. Engrg., ASCE, 136(3), 188-190.
75.Yang S.Q. (2010). “Conditionally-Averaged turbulent structures in 2-D open channel flow and wake-Law”. Water Management, 163(2), 79-88.
76.Yang S.Q. and G-R Dou (2010). “Turbulent Drag Reduction with Polymer Additive in Rough Pipes”. J. Fluid Mech., Vol. 642, 279-294.
77.Yang S.Q. (2009). “Mechanism for Initiating Secondary Currents in Channel Flows” Canadian Journal of Civil Engineering, 36 (8), 1506-1516.
78.Yang S.Q. (2009). “influence of sediment and Secondary Currents on Velocity”. Water Management, 162(5), 299-309.
79.Yang S.Q. (2009) “Drag reduction in turbulent flow with polymer additives”. J. Fluids Engineering, ASME, 131(5), 051301.
80.Yang S.Q. (2009). “Velocity distribution and wake-law in gradually decelerating flows”. J. Hydr. Res., IAHR, 47(2), 177-184.
81.Wang J. Yang S.Q. and Liu P.W. (2009). “Preliminary research on the programme in comprehensive governancing of Dongting lake”. Environmental science & technology, 32(11), 76-79. (In Chinese).
82.Liu, P.W. and Yang S.Q. (2008). “The water environmental problems would be solved after construction of sewerage drainage channel around the lake” J. Environ. Science and Technology, 31(12), 442-445, (in Chinese).
83.Yang S.Q. and A. T. Chow (2008). “Turbulence structures in non-uniform flows”, Advances in Water Resources, 31, 1344–1351
84.Yang S.Q. and S.K. Tan (2008). “Flow resistance over mobile bed in an open-channel flow”. Journal of Hydraulic Engineering, ASCE, 134(7), 937-947.
85.Yang S.Q. and G. Dou (2008). “Modeling of Viscoelatic turbulent flow in open channel and pipe” Physics of Fluids, American Institute of Physics, 20(6), 065105.
86.Yang S.Q., Koh, S.C., Kim, I.S. and Song, Y.C. (2007). “Sediment transport capacity-an improved Bagnold formula”. International Journal of Sediment Research, 22(1), 27-38.
87.Yang S.Q. * (2007). “Turbulent transfer mechanism in sediment-laden flow”. Journal of Geophysical Research, AGU, 112, F01005, doi: 10.1029/2005JF000452.
88.Yang S.Q. * (2007). “Closure of Sediment transport capacity in rivers”, Journal of Hydraulic Research, IAHR. 45(3), 425-428.
89.Yang S.Q. * and J. W. Lee (2007). “Reynolds shear stress distributions in a gradually varied flow”. Journal of Hydraulic Research, IAHR. 45(4), 462-471.
90.Yang S.Q. (2007), Soft Dam Could Effectively Alleviate the Water Crisis Caused by Saline Water Intrusion. Science Paper online http://www.paper.edu.cn/releasepaper/content/200701-264
91.Yang S.Q. * and S.Y. Lim (2006). “Discussion on Shear Stress in Smooth Rectangular Open-Channel Flows”. Journal of Hydraulic Engineering, ASCE , 132(6), 629-631.
92.Yang S.Q. *, S.K. Tan and S.Y. Lim (2006). “Closure of relation between flow resistance and bed-form geometry in wide alluvial channels”. Water Resources Research, AGU, 42, WR06602.
93.Yang S.Q. * Tan S.K., Lim S.Y., Zhang S.F. (2006). “Velocity distribution in combined wave-current flows”. Advances in water resources, 29(8), 1196-1208.
94.Yang S.Q. *, W. L. Xu and G.L. Yu (2006) “Velocity Distribution in a gradually accelerating flow”. Advances in water resources, 29(12), 1969-1980.
95.Yang S.Q. * and G. Dou (2005). “Drag Reduction in Flat-plate turbulent boundary layer flow by polymer additive”. Physics of Fluids, American Institute of Physics.17(6), 065104
96.S.Y. Lim and Yang S.Q. * (2005) “Simplified model of tractive-force distribution in closed conduits”, Journal of Hydraulic Engineering, ASCE, 131(4), 322-329.
97.Yang S.Q. (2005), “Completely solve water shortage problem in Shanghai by coastal reservoirs”, Science paper online, http://www.paper.edu.cn/,200508-18/2006-04-20.
98.Yang, S.Q. (2005), “Transformation of lakes into reservoirs can greatly mitigate the flood disasters in middle and lower reaches of Yangtze River”, Science paper online, 2005, https://wenku.baidu.com/view/cdce0a1555270722192ef7cb.html
99.Yang S.Q. (2005), “Strategy of “Remediation Follows Pollution” Causes Pollution out of Control in Lakes”. Science paper online, http://www.paper.edu.cn/releasepaper/content/200508-186.
100.Yang, S.Q., (2005), Preliminary Study on Alleviation of Water Crisis in Shenzhen and Pearl River Delta, Science paper online, https://wenku.baidu.com/view/829266eb856a561252d36fbd.html.
101.Yang, S.Q. (2005), Preliminary Study on the Optimal Scheme of South to North Water Diversion in China, Science paper online, https://xueshu.baidu.com/usercenter/paper/show?paperid=b92adf176f403a18f9c7bffc647d54b7&site=xueshu_se.
102.Yang, S.Q. (2005), Investigation on Relationship between Tianjin’s Coastal Reservoir and SNWDP’s Efficiency. Science Paper Online, https://xueshu.baidu.com/usercenter/paper/show?paperid=69c1fc5c9f51e14fa05c303ff025fe3f&site=xueshu_se
103.Yang S.Q. * (2005). “Formula for sediment transport in rivers, estuaries and coastal waters”. Journal of Hydraulic Engineering, ASCE , 131(11) 968-979.
104.Yang S.Q. * (2005). “Prediction of total bed material sediment discharge” Journal of Hydraulic Research, IAHR. 43(1), 12-22.
105.Yang S.Q. * and S.Y. Lim (2005), “Boundary Shear Stress Distribution in Trapezoidal Channels”. Journal of Hydraulic Research, IAHR. 43(1), 98-102.
106.Yang S.Q. * (2005). “Sediment transport capacity in rivers”, Journal of Hydraulic Research, IAHR. 43(2), 131-138.
107.Yang S.Q. *, S.Y. Lim and McCorquadale A.J. (2005). “investigation of near wall velocity in 3-D smooth channel flows”. Journal of Hydraulic Research, IAHR. 43(2), 149-157.
108.Yang S.Q. *, S.K. Tan and S.Y. Lim (2005). “flow resistance and bed-form geometry in a wide alluvial channel”. Water Resources Research, AGU, 41(9) W09419.
109.Yang S.Q. *, Kim, I.S., Koh, D. and Song, Y.C. (2005): “interaction of streamwise and wall-normal Velocities in combined wave-current motion”. China Ocean Engrg., 19(4), 557-570.
110.Yang S.Q. *, (2005). “Interactions of boundary shear stress, secondary currents and velocity”. Fluid Dynamics Research, 36(3), 121-136.
111.Yang S.Q. * and McCorquadale A.J. (2004) “Determination of boundary shear stress and Reynolds shear stress in smooth rectangular channel flows”. Journal of Hydraulic Engineering, ASCE ,130(5), 458-462.
112.Yang S.Q. *, S.K. Tan and Lim S.Y. (2004). “Velocity Distribution and Dip Phenomena in Smooth and Straight Open Channel Flow”. Journal of Hydraulic Engineering, ASCE, 130(12), 1179-1186.
113.Yang S.Q. *, Yu J. and Wang Y. (2004). “Estimation of Diffusion Coefficients, Lateral shear stress and Velocity in Open channels with Complex Geometry” Water Resources Research, AGU , 40(5), 207-217.
114.Yang S.Q. , S.K. Tan and S.Y. Lim (2004), “Velocity and sediment concentration profiles in sediment- laden flows”. China Ocean Engrg. 18 (2): 229-244. 115.Yu JX, Zhang W, Wang GD, Yang S.Q. (2004). “A Boussinesq equation-based model for nearshore wave breaking”. China Ocean Engrg., 18 (2), 315-320.
116.Yang S.Q. * and S.Y. Lim (2003). “Total Load Transport Formula for Flow in Alluvial Channels” Journal of Hydraulic Engineering, ASCE, 129(1), 68-72.
117.Yang S.Q. * (2003). “Sediment transport bin rivers and coastal waters.” China Ocean Engrg. 17(4), 527-540.
118.Yang S.Q. * (2003) “Potential Water Resources In Singapore” J. of Water supply: research and Technology, International Water Association, 52(6), 425-434.
119.Yang S.Q. * and S.Y. Lim (2002) “Discussion on A geometrical method for computing the distribution of boundary shear stress across irregular straight open channels” Journal of Hydraulic Research, IAHR., 40(4), 535-542.
120.Yang S.Q. , and Lim, S.Y. (1999). “Closure to Mechanism of Energy Transportation and Turbulent Flow in a 3-D Channel” Journal of Hydraulic Engineering, ASCE , 125(3), 319-320. 121.Yang S.Q. and S.Y. Lim, (1998) “Boundary Shear Stress Distribution in Smooth Rectangular Open Channel Flows” Proc. International Civil Engineers, Water Maritime & Energy, 130(9), 163-173.
122.Yang S.Q. and S.Y. Lim* (1997) “Mechanism of Energy Transportation and Turbulent Flow in a 3-D Channel”. Journal of Hydraulic Engineering, ASCE, 130(9), 163-173.
123.Yang S.Q. * (1996) “The Law of Boundary Shear stress and friction factor in river Channels” J. of Hydraulic Engineering, CHES, No. 6, p.62-69, Beijing. (in Chinese).
124.Yang S.Q. * and Zhu Xuan (1995) “On Turbulent Structure of Three -Dimensional Flow” J. of Nanjing Hydraulic Research Institute, Nov. 3, pp. 1-12(in Chinese).
125.Yang S.Q. * (1993) “The Law of Boundary Shear in Open Rectangular Channels” J. of Sediment Research, Beijing, Nov. 3, pp. 95-104 (in Chinese).
126.Yang S.Q. * and Dou Guo-ren (1989) “Laser-Doppler-Meter Measurements of Drag Reduction Flow in Roughened Channels” J. of Nanjing Hydraulic Research Institute, No. 3, pp. 1-10 (in Chinese).
127.Dou Guo-ren and Yang S.Q. * (1989) “The Drag-reducing Mechanism of Polymer Dilute Solution and Its Energy Spectrum” J. of Nanjing Hydraulic Research Institute, No. 4, pp. 1-12 (in Chinese).

(e) Publications in conference proceedings
128.Sitharam, T.G., Kolathayar S., Yang, S.Q. and Krishnan A. (2019), Concept of a geotechnical solutions to address the issues of seawater intrusion in Ashtamudi Lake, Kerala. S. Shu ET AL. (EDS.), new development in materials for Infrastructure sustainability and the contemporary issues in Geo-environmental engineering, sustainable civil infrastructures. Springer International Publishing AG, pp. 238-246.
129.Yang SQ (2018), “Preliminary feasibility study for Australian Coastal reservoirs”, Proceedings of the 1st International Workshop on Coastal Reservoirs, Wollongong,.
130.Yang SQ (2018), “Design Considerations of Coastal Reservoirs: Learning from the Past for the Future” Proceedings of the 1st International Workshop on Coastal Reservoirs, Wollongong,.
131.Yang S.Q. and Siva, M. (2017), REVIEW OF THE HISTORICAL DEVELOPMENT OF COASTAL RESERVOIRS IN THE WORLD, PROC. OF 37th IAHR world congress, KL, Malaysia.
132.Yang, S.Q. (2017), NEW EQUATIONS FOR FLOW DRAG FORCE AND ITS APPLICATION, PROC. OF 37th IAHR world congress, KL, Malaysia.
133.Yang, S.Q. (2017), PROBLEMS IN SEDIMENT TRANSPORT FORMULAS AND ITS IMPROVEMENT, PROC. OF 37th IAHR world congress, KL, Malaysia.
134.Yang, S.Q., SIVAKUMAR, M., JONES, B. and LIU, J.L. (2017), “COASTAL RESERVOIR IN ALEXANDRINA LAKE CAN QUENCH ADELAIDE’S THIRST”. PROC. OF 37th IAHR world congress, KL, Malaysia.
135.Yang, S. Q. (2016). Technology of coastal reservoir and its contribution to the world water crisis. Proc. of International Conference on Water, Environment, Energy and Society (ICWEES-2016), March 15-18, Bhopal, India. (Keynote speech).
136.Yang, S.Q. (2015). How to Supply Sufficient Good Quality Water to Coastal Communities Using Coastal Reservoirs. Proc. of The 4th Hydrology, Ocean and Atmosphere Conference (HOAC 2015), Shanghai, China, July 19-21. (Keynote speech).
137.Yang, S. Q. (2015). Coastal reservoir-A technology that may dominate future water supply. 2015 International Conference on Water Resource and Environment (WRE2015), July 25-28, Beijing, China (Keynote speech).
138.Alfadhli, I., Yang, S.-Q.and Sivakumar, M. (2014). The prediction of turbulence intensities in unsteady flow. Proc. of 35th Hydrology and Water Resources Symposium, HWRS 2014; Pan Pacific HotelPerth; Australia.  Pages 860-867
139.Alfadhli, I., Yang, S.-Q.and Sivakumar, M. (2014). Why the observed turbulence intensities in non-uniform flow deviate from those in uniform flow?  Proc. of 35th Hydrology and Water Resources Symposium, HWRS 2014; Pan Pacific HotelPerth; Australia. Pages 525-532
140.Jianli Liu, Yang S.Q. and CB Jiang, (2013), Coastal Reservoirs Strategy for Water Resource Development—A Review of Future Trend. Journal of Water Resource and Protection, 5.
141.Liu, J., Yang S.Q., Wiltshire, J. (2013). Applying mathematical model to simplify the procession of pipeline route selection, World Environmental and Water Resources Congress 2013: Showcasing the Future – Proceedings of the 2013 Congress.
142.Alfadhli, I., Yang S,Q. and Siva, M. (2013). Distribution of Reynolds shear stress in steady and unsteady flows. Intn Multidisciplinary Science Geo Conf.
143.Alfadhli, I., Yang S,Q. and Siva, M. (2013). Velocity distribution in non-uniform/unsteady flow and the validity of log-law. International Multidisciplinary Science Geo Conf.
144.Yang S.Q. (2013). “A simple model to extend 1-d hydraulics to 3-d hydraulics”, Proc. of 35th IAHR World congress, Chengdu, China.
145.Yang S.Q. (2013). “Why cannot sediment transport be accurately predicted”, Proc. of 35th IAHR World congress, Chengdu, China.
146.Yang S.Q. (2013). “Influence of three-gorge-dam on downstream ecosystem and counter-measures”. Proc. of 35th IAHR World congress, Chengdu, China.
147.Yang S.Q. (2013). “Coastal reservoir-the trend of water supply in new era”, International Symposium for next generation infrastructure—Australia, Oct. 1-3, Sydney
148.Donghong Ding, Yang S.Q. and Yu Han, (2013). “Drag Reduction by Polymers in Turbulent Pipe/Channel Flows”, Proc. of 35th IAHR World congress, Chengdu, China.
149.Yu Han, Yang S.Q. (2013). “Experimental Study on Flow Partitioning Based on Turbulence Shear Stress”, Proc. of 35th IAHR World congress, Chengdu, China.
150.Yang S.Q. (2012). “Influence of vertical velocity on sediment transport”, 18th IAHR-APD, Jeju, South Korea.
151.Dharmasiri N, Yang S.Q., Han Y (2012). “Effects of Roughness Density on the Determination of Flow Resistance in Open Channel Flow over Two-Dimensional Roughness”. 2012 World Environmental & Water Resources Congress, ASCE, 1349-1365
152.Dharmasiri N, Yang S.Q., Han Y (2012). “Conditionally averaged turbulent structures on flow over two- dimensional dunes”. International Conference on Lakes, Rivers, Groundwater and Sea, Faro, Portugal, 551-561
153.Dharmasiri N, Yang S.Q. Han Y (2012). “Structure of the correlation between conditionally averaged turbulent structures and water level variations in open channel flow”. 18th Congress of the Asia & Pacific division of the IAHR, Jeju, Korea, 800-810
154.Han Y, Yang S.Q. Dharmasiri N (2012). “Determination of Boundary Shear In Smooth Closed Duct Using Momentum Balance Method (MBM)”. Proc. of 9th WSEAS International Conference on FLUID MECHANICS Cambridge, MA, USA, 180-185.
155.Han Y, Yang S.Q. Dharmasiri N (2012). “Application of Main Flow Data in the Determination of Boundary Shear Stress in Smooth Closed Ducts”. 2012 World Environmental & Water Resources Congress, ASCE, 1517-1527
156.Dharmasiri N, Yang S.Q., Han Y (2011). “Friction Factor Calculations in Rough Bed Flows”. Proc. Of International Conference on World’s Large Rivers, Vienna, Austria,57-62.Shu-Qing Yang (2011). “Invalidity of classical log-law and its mechanism” 34th IAHR World Congress, Brisbane, Australia.
157.Yang S.Q. (2011). “Coastal Reservoirs–A Possible Strategy in Diversifying Water Supplies and its Case Study in Australia”. 34th IAHR World Congress, Brisbane, Australia.
158.Yang S.Q. (2011). “Feasibility study of coastal reservoir for water supply to Southeast Queensland, Australia”. 6th International Conference on Asian and Pacific Coasts. Hong Kong.
159.Yang S.Q. (2010). “Mechanism of secondary currents initiation and maintenance in open channel flows”. The 17th IAHR-APD Congress, Auckland, New Zealand.
160.Yang S.Q. (2010). “Mechanism of sediment transport in uni-directional, bi-directional flows” ISHPF2010, Nanjing. Sept. 16-18. China
161.Yang S.Q. (2010). “Velocity deviation from log-law: Mechanism & effects”. 11th, ISRS, Sept. 6-9, South Africa.
162.Yang S.Q. (2009). “Coastal Reservoir in Murray-Darling River and its useful experience for Yellow River”. 4th Yellow River Forum. Zhengzhou, China.
163.Yang S.Q. (2009). “Water Resources Available in Australian’s Coastal Zones and its Development by coastal reservoirs”. 5th International Conference on Asian and Pacific Coasts, Singapore.
164.Yang S.Q. (2008). “Wall-normal velocity, turbulent structures and sediment transport”. 16th APD-IAHR congress, Nanjing, China.
165.Yang S.Q. * (2007). “coastal reservoirs- an innovative solution for water crisis”. 32nd IAHR Congress, Venice, Italy.
166.Yang S.Q. * (2007). “mechanism for initiating secondary currents in 3-D flows”. 32nd IAHR Congress, Venice, Italy.
167.Yang S.Q. * (2007). “Velocity distribution in sediment-laden flow”. International Conference on Sedimentation, Moscow, Russia.
168.Yang S.Q. * (2007). “yellow river harnessing and sustainable water resources development”. The third Yellow River Forum. Zhenzhou, China.
169.Yang S.Q. * (2007). “Problems in existing coastal reservoirs and a potential solution by soft dam”. The third international Conference on Asian and Pacific Coasts, Nanjing, China.
170.Yang S.Q. * and S.F. Zhang, (2007). “Power law in sediment-laden flows”. Yangtze Forum, Changsha, China.
171.Yang S.Q. * (2005). “Mechanism of velocity deviation from classical log-law”. XXXI IAHR Congress, Seoul, Korea.
172.Yang S.Q. * and I-S Kim (2005). “New strategies for water crisis in the 21st century”. XXXI IAHR Congress, Seoul, Korea.
173.Yang S.Q. * and I-S Kim (2005). “Water Resources development- new challenge to coastal engineers in the 21Sst century”. 3rd Intern. Conf. on Coastal Engrg., Jeju, Korea.
174.Yang S.Q. *, Tan S-K and Lim S-Y. (2004) “prediction of total sediment discharge” 2nd Intern. Conference on Scour and Erosion, Singapore.
175.Yang S.Q. * (2004). “Velocity Distribution and sediment transport in Rivers” Ninth International Symposium on River Sedimentation, China.
176.Yang S.Q. and Lim Siowyoung (2003). “Sediment Transport in Coastal Waters”2nd International Conference on Port and Maritime R&D and Technology, Singapore.
177.Yang S.Q. * and Lim Siowyong (2003). “Velocity Distribution in Coastal Waters” 2nd International Conference on Port and Maritime R&D and Technology, Singapore.
178.Yang S.Q. (2003). “Strategic Study on Yellow River’s Water Supply and Regulation”. 1st International Yellow River Forum on River Basin Management, China.
179.Yang S.Q. * (2002). “1st and 2nd approximate solution of Reynolds equation in 3-D channels” proceeding of 13th Congress of Asia and Pacific Division of international Association for Hydraulic Research (IAHR), world scientific Press. (Best Paper Award).
180.Yang S.Q. * and Lin Pengzhi (2002) “sediment transportation in rivers and coastal waters”. Proceeding of 13th Congress of Asia and Pacific Division of International Association for Hydraulic Research (IAHR), world scientific Press.
181.Yang S.Q. * (2002). “How to alleviate global water stress, case study about China water diversion scheme”. Proceeding of 13th Congress of Asia and Pacific Division of International Association for Hydraulic Research (IAHR), world scientific Press.
182.Yang S.Q. * (2002). “Water resources development in small islands” Proceeding of 13th Congress of Asia and Pacific Division of International Association for Hydraulic Research (IAHR), world scientific Press.
183.Yang S.Q. * (2000). “Boundary Shear Stress, Velocity Distribution and Wall Functions in Smooth 3-D Channels” Hydraulic machinery and Systems 20th IAHR Symposium. Charlotte, North Carolina, USA.
184.Yang S.Q. * and Dou Guo-Ren (1993) “Turbulent Structure of Drag Reduction Flow on Turbulent Boundary Layer” No. 3, J. of Nanjing Hydraulic Research Institute. pp. 212-224 (in Chinese).
185.Yang S.Q. * (1992) “The Mechanism of alluvion in Ship Lock and the proposed New Method of decreasing the sediment alluvion in it” Chinese Symp. on Fundamental Study on Sediment Transport, Nov. Beijing. pp. 485-492 (in Chinese).
186.Yang S.Q. * and Dou Guo-Ren (1992) “The Turbulent Structure of Polymer Drag Reduction Flow in Roughness Channels” Proc. of International Symp. on Hydraulic Research in Nature and Laboratory. Nov. Wuhan, China. pp. 308-314.

(f) Research Reports and Thesis
1.Dharmasiri N, Yang S.Q. Han Y (2012). “Conditionally Averaged Turbulent Structures over 2D dunes in Large Rivers”. WSEAS Trans.on Fluid Mechanics (DOI: 2000973994).
2.Yang S.Q. (1999): “Numerical Modeling Study on Lake Pontchartrain Outfall” University of New Orleans, USA.
3.Yang S.Q. (1996): “Interactions of Boundary Shear Stress, Velocity Distribution and Flow Resistance in 3-D Channels” Thesis for Doctoral Degree, Nanyang Technological University, Singapore.
4.Yang S.Q. (1988): “near wall Turbulent Structure of Visco-elastic Fluid Flow” Thesis for Master Degree. Nanjing Hydraulic Research Institute, in Chinese.
5.Yang S.Q. (1991): “A new Approach for Determining Boundary Shear Stress Distribution and Flow Resistance in Non-circular Channels” Nanjing Hydraulic Research Institute. pp. 1-45.
6.Yang Dechang and Yang S.Q. (1991) “Sediment Model Study on the Influence of Sediment Transport on Navigation Channels and Hydraulic Structures in Three Gorge Project” Key Study Project of National Science and Technology Committee. pp. 7-35.
7.Dong Feng-Wu and Yang S.Q. (1994). “Experimental Study on the Influence of Tide and Wave on Sediment Transport in Huanghua Port” Nanjing Hydraulic Research Institute.

Supervised thesis
Han Y. (2014), Experimental Verification of Flow Divisibility in 3-D Laboratory Channels, PhD. Thesis, Univ. of Wollongong.

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