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Historical Records of Australian Science Historical Records of Australian Science Society
The history of science, pure and applied, in Australia, New Zealand and the southwest Pacific
RESEARCH ARTICLE

Scott William Sloan 1954–2019

John. P. Carter A D , David. M. Potts B and Antonio Gens C
+ Author Affiliations
- Author Affiliations

A School of Engineering, University of Newcastle, Callaghan NSW 2308, Australia.

B Department of Civil and Environmental Engineering, Imperial College London, South Kensington Campus, London SW7 2AZ, United Kingdom.

C Department of Geotechnical Engineering and Geosciences, Universitat Politècnica de Catalunya, Jordi Girona 1-3, Edifici D-2, 08034 Barcelona, Spain.

D Corresponding author. Email: john.carter@newcastle.edu.au

Historical Records of Australian Science 33(1) 64-71 https://doi.org/10.1071/HR21008
Published: 11 January 2022

Abstract

Scott Sloan (1954–2019) was a leader of academic engineering in Australia and beyond, as evidenced by his numerous professional accolades and important research achievements, which have had significant impact on his chosen profession of geotechnical engineering. Educated in Australia and the United Kingdom, he returned to Australia in 1984 and developed a large and active research group at the University of Newcastle, and tackled a wide range of important problems in civil and mining engineering. These include the development of computational methods to predict the mechanical behaviour of soil and rock masses, and his pioneering methods to predict the collapse states of structures made of, on, and in, earth materials, allowing engineers to design cheaper and safer civil infrastructure around the globe. Sloan established long-standing international collaborations and was awarded many honours for his research achievements. He was also a keen and skilful fisherman and a more than competent blues guitar player.


References

Ali, A., Huang, J. S., Lyamin, A. V., Sloan, S. W., and Cassidy, M. J. (2014a) Boundary effects of rainfall-induced landslides, Computers and Geotechnics, 61, 341–354.
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Augarde, C. E., Lyamin, A. V., and Sloan, S. W. (2003) Prediction of undrained sinkhole collapse, Journal of Geotechnical and Geoenvironmental Engineering, 129, 197–205.
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Kelly, R., Sloan, S. W., Pineda, J. A., Huang, J. S., Kouretzis, G., and Carter, J. P. (2017) Performance of a trial embankment at the Ballina soft soil Field Testing Facility, Proceedings, 19th ISSMGE. Conference, Seoul Korea, 1(1), 1291–1294. https://www.issmge.org/uploads/publications/1/45/06-technical-committee-07-tc201-07.pdf, viewed June 2021.

Kelly, R. B., Sloan, S. W., Pineda, J. A., Kouretzis, G., and Huang, J. S. (2018) Outcomes of the Newcastle symposium for the prediction of embankment behaviour on soft soil, Computers and Geotechnics, 93, 9–41.
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Pineda, J. A., Kelly, R. B., Suwal, L., Bates, L., and Sloan, S. W. (2019) The Ballina soft soil Field Testing Facility, AIMS Geosciences, 5, 509–534.
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Sheng, D. C., Smith, D. W., Sloan, S. W., and Gens, A. (2003a) Finite element formulation and algorithms for unsaturated soils: part 2: verification and applications, International Journal for Numerical and Analytical Methods in Geomechanics, 27, 767–790.
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