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Dr Tan’s principal professional interests are in corrosion science and engineering and their applications for enhancing the reliability and durability of civil and industrial infrastructures, in particular underground oil&gas pipelines, hydrogen fuel systems and offshore infrastructures. His work spanned the range from fundamental study on issues such as electrochemical heterogeneity and corrosion science, applied research on issues such as corrosion testing and monitoring, localised corrosion measurement and prediction, corrosion inhibition, anti-corrosion coatings and cathodic protection, to industry contracted research on issues such as coating performance assessment, pitting and weldment corrosion of desalination plants. More specifically, Dr Tan has actively engaged with the Australia’s energy pipelines, future fuels and offshore infrastructure industries, and served as a Program Leader for the Energy Pipelines Cooperative Research Centre (EPCRC) in its “Extension of Safe Operating Life of New and Existing Energy Pipelines” research program. He has led more than 30 research projects over the past decade to address critical engineering issues that affect the reliability and durability of underground pipelines and offshore oil & gas infrastructures. These include major research projects for the EPCRC (14 projects), the Future Fuels CRC (FFCRC, 6 projects), National Centre of Excellence in desalination Australia (NCED, 1 project), National Energy Resources Australia through its National Decommissioning Research Initiative (NDRI, 1 project), Australian Research Council (ARC, 2 projects), as well as various short-term industry projects (approximately 20 projects). He has led the establishment of the National Facility for Pipeline Coating Assessment (NFPCA), which has won a CRC innovation award and acquired NATA accreditation. The NFPCA is currently the only one of its type in Australia and plays a vital role in increasing security of energy pipelines and infrastructures. Outcomes and benefits from these research projects have included the review and subsequent revision of the Australian Cathodic Protection Standard AS2832.1 criterion for cathodic protection of pipelines subject to stray current; a revision of AS4853 of the test voltage applied to pipeline coating; the development of a real time remote monitoring system of pipeline corrosion rates; a greater understanding of the corrosion mechanism under disbonded shielding coatings.
研究兴趣
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CORROSION SCIENCE (2023): 111019-111019
SSRN Electronic Journal (2023): 111333-111333
International Journal of Hydrogen Energyno. 43 (2023): 16501-16516
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Corrosion Engineering Science and Technologypp.1-10, (2023)
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METALSno. 10 (2023): 1703-1703
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