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个人简介
Dr Chunshun Zhang’s research focuses on three categories: (a) fundamental research that advances the discipline, (b) applied research that benefits industry, and (c) research that informs and influences policy and government. Most of his research serves for a long-term purpose, such as to improve the understanding of the fundamental mechanism of granular materials, to provide a useful tool for water utilities to better manage their underground asset like pipelines, and to design a well-adaptive high efficient microwave equipment to enhance rock fragmentation, etc.
Chunshun’s expertise is in general areas of geotechnical engineering and geo-infrastructure. He has a background in both academia (over 4 years) and industry (around 3 years in GHD, Australia) and is a member of Engineers Australia and Australia Geomechanics Society.
He has made novel contributions to areas including geomechanics in the modelling of load-induced grain crushing, estimation of the piled foundation bearing capacity in crushable soils, mineral crushing in roll mills, etc. His applied research areas are on the modelling of surface subsidence induced by underground longwall mining, where he has established one of Australia’s largest numerical models for vast scale underground mining processes for industrial applications. In recent years, his seminal contributions are on buried water pipelines with a focus on the failure mechanism of pressurised water mains. He has carried out a large number of numerical analyses to develop a Monash Tool for water utilities to improve their asset management capability.
Overall, he has published over 40 technical papers in a diverse range of topics and has been involved in attracting over 7 million Australian dollars external and internal research grants, either being CI or project lead. He is the winner of some prestigious international/national awards, including the George Stephenson Medal for the best paper in Géotechnique 2014 (second best paper across all ICE journals), International Water Association’s Project Innovation Award (2016), etc.
Chunshun’s expertise is in general areas of geotechnical engineering and geo-infrastructure. He has a background in both academia (over 4 years) and industry (around 3 years in GHD, Australia) and is a member of Engineers Australia and Australia Geomechanics Society.
He has made novel contributions to areas including geomechanics in the modelling of load-induced grain crushing, estimation of the piled foundation bearing capacity in crushable soils, mineral crushing in roll mills, etc. His applied research areas are on the modelling of surface subsidence induced by underground longwall mining, where he has established one of Australia’s largest numerical models for vast scale underground mining processes for industrial applications. In recent years, his seminal contributions are on buried water pipelines with a focus on the failure mechanism of pressurised water mains. He has carried out a large number of numerical analyses to develop a Monash Tool for water utilities to improve their asset management capability.
Overall, he has published over 40 technical papers in a diverse range of topics and has been involved in attracting over 7 million Australian dollars external and internal research grants, either being CI or project lead. He is the winner of some prestigious international/national awards, including the George Stephenson Medal for the best paper in Géotechnique 2014 (second best paper across all ICE journals), International Water Association’s Project Innovation Award (2016), etc.
研究兴趣
论文共 96 篇作者统计合作学者相似作者
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Computers and Geotechnics (2024): 106274
Computers and Geotechnics (2024): 106233
Zicheng Wang,Chunshun Zhang
International Journal of Rock Mechanics and Mining Sciences (2024): 105719
INTERNATIONAL JOURNAL OF MINING SCIENCE AND TECHNOLOGYno. 10 (2023): 1317-1317
International Journal of Mining Science and Technologyno. 10 (2023): 1317-1317
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user-5f8cf9244c775ec6fa691c99(2023)
International Journal of Rock Mechanics and Mining Sciences (2023): 105533
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INTERNATIONAL JOURNAL OF GEOMECHANICSno. 11 (2023)
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