Projects per year
Personal profile
Research interests
- Computational Fluid Dynamics
- Lattice-Boltzmann Methods
- Multiphase Flows
- Multiphysics Modelling
- Turbulence
Monash teaching commitment
- MEC3451 Fluid Mechanics 2
- MEC3459 Materials Selection for Engineering Design
- MTE2102 Phase equilibria and phase transformations
- MMA3001 Numerical methods and machine learning
- ENG1005 Engineering mathematics
Education/Academic qualification
Mechanical Engineering, PhD, Direct Numerical Simulation, Study, and Quantification of Fractal Grid-Generated Turbulent Flows
Award Date: 3 Feb 2022
Research area keywords
- Computational Fluid Dynamics
- Multiphysical modelling
- Lattice Boltzmann method
- Turbulent flows
- Nonlinear Dynamics
- Algae
Expertise related to UN Sustainable Development Goals
In 2015, UN member states agreed to 17 global Sustainable Development Goals (SDGs) to end poverty, protect the planet and ensure prosperity for all. This person’s work contributes towards the following SDG(s):
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SDG 9 Industry, Innovation, and Infrastructure
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SDG 11 Sustainable Cities and Communities
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SDG 13 Climate Action
Collaborations and top research areas from the last five years
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Decoding the Role of Valency in Multi-valent Ion Partitioning through Ion-Exchange Membranes: A Molecular Theory Approach
Goh, K. B. (Primary Chief Investigator (PCI)), Yew Mun, H. (Chief Investigator (CI)), Xin, W. (Chief Investigator (CI)), Chin Vern, Y. (Chief Investigator (CI)) & Teng, K. H. (Chief Investigator (CI))
1/10/23 → 30/09/26
Project: Research
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Graphene Enhanced Devices for Electronics Cooling
Yew Mun, H. (Primary Chief Investigator (PCI)), Ming Kwang, T. (Chief Investigator (CI)), Jong Boon, O. (Chief Investigator (CI)) & Chin Vern, Y. (Chief Investigator (CI))
1/05/24 → 30/06/26
Project: Research
Research output
- 7 Article
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Lattice Boltzmann-based microchannel concentration mixing with surface roughness-mediated flow dynamics
Chai, L. K., Yeoh, C. V., Ooi, E. H. & Foo, J. J., Mar 2025, In: Physics of Fluids. 37, 3, 15 p., 032027.Research output: Contribution to journal › Article › Research › peer-review
Open Access3 Link opens in a new tab Citations (Scopus) -
Fractal cube-induced homogenisation of dual concentration microchannel flow in transitional Re: Lattice Boltzmann modelling
Chai, L. K., Yeoh, C. V., Ooi, E. H. & Foo, J. J., Jul 2024, In: International Journal of Thermal Sciences. 201, 18 p., 109056.Research output: Contribution to journal › Article › Research › peer-review
Open AccessFile2 Link opens in a new tab Citations (Scopus) -
Optimization of Reynolds stress model coefficients at multiple discrete flow regions for three-dimensional realizations of fractal-generated turbulence
Mok, M. C. H., Yeoh, C. V., Tan, M. K. & Foo, J. J., Jul 2024, In: European Journal of Mechanics, B/Fluids. 106, p. 30-47 18 p.Research output: Contribution to journal › Article › Research › peer-review
Open AccessFile8 Link opens in a new tab Citations (Scopus) -
Space-filling single square and square fractal grids induced turbulence: Reynolds stress model parameters-optimization
Mok, M. C. H., Yeoh, C. V., Tan, M. K. & Foo, J. J., Mar 2023, In: Results in Engineering. 17, 22 p., 100806.Research output: Contribution to journal › Article › Research › peer-review
Open AccessFile5 Link opens in a new tab Citations (Scopus) -
Utilization of pressure wave-dynamics in accelerating convergence of the lattice-Boltzmann method for steady and unsteady flows
Yeoh, C. V., Ooi, E. H. & Foo, J. J., 15 Dec 2021, In: Applied Mathematics and Computation. 411, 24 p., 126498.Research output: Contribution to journal › Article › Research › peer-review
3 Link opens in a new tab Citations (Scopus)