Faculty profile
Yee-Chung Jin
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Research
Latest papers
Numerical simulation study on pressure response and fluid loss mechanism of coal fracture network under particle temporary plugging.
PloS one · 2026
Theoretical model and experimental verification of seepage-transition-spontaneous imbibition in water migration of water-injected coal.
Scientific reports · 2025 · senior author
Treatment of oily waters using vermiculite.
Water research · 2005 · senior author
Latest funding
- $108,000
Modeling Fluid and Granular Flow using Mesh-free Particle Method
NSERC · 2022 · Principal investigator
- $170,000
Improvement of Mesh-free Particle Method for Free Surface Flow Simulation
NSERC · 2017 · Principal investigator
- $235,000
A mesh-free particle model for simulation of flow and sediment transport in open channels
NSERC · 2012 · Principal investigator
3 publications.
Numerical simulation study on pressure response and fluid loss mechanism of coal fracture network under particle temporary plugging.
Sun Q, Chen J, Guo L, Han J, Wang Y, Yang X, Guo Y, Hu X, Jin YC, Ni G
Theoretical model and experimental verification of seepage-transition-spontaneous imbibition in water migration of water-injected coal.
Sun Q, Guo Y, Chen J, Yang X, Yan X, Hu X, Guo L, Jin YC
Treatment of oily waters using vermiculite.
Mysore D, Viraraghavan T, Jin YC
Modeling Fluid and Granular Flow using Mesh-free Particle Method
Principal investigators: Jin, Yee-Chung
Keywords: numerical analysis; mesh free method; hydraulics; granular flow; computational methods; mixing; momentum transport
Improvement of Mesh-free Particle Method for Free Surface Flow Simulation
Principal investigators: Jin, Yee-Chung
A mesh-free particle model for simulation of flow and sediment transport in open channels
Principal investigators: Jin, YeeChung
A mesh-free particle model for simulation of flow and sediment transport in open channels
Principal investigators: Jin, YeeChung
Modeling flow and pressure distribution by multilayer averaged equations
Principal investigators: Jin, YeeChung
Use depth-averaged equations to model sediment transport
Principal investigators: Jin, YeeChung
Computation of flow and sediment transport in rivers by depth-averaged model
Principal investigators: Jin, YeeChung
Modelling the non-uniform flow by depth-averaged equations
Principal investigators: Jin, YeeChung
Flume and velocity measuring device
Principal investigators: Jin, YeeChung
The effect of the secondary flow in modeling the contaminant transport in rivers
Principal investigators: Jin, YeeChung
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
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