YEE-CHUNG JIN

YEE-CHUNG JIN

University of Regina

H-index: 27

North America-Canada

About YEE-CHUNG JIN

YEE-CHUNG JIN, With an exceptional h-index of 27 and a recent h-index of 17 (since 2020), a distinguished researcher at University of Regina, specializes in the field of water, fluid, model.

His recent articles reflect a diverse array of research interests and contributions to the field:

Design optimization of sloshing tank using weakly compressible mesh free model

Numerical analysis of the effect of replacing the start-up frictional coefficient with soil strength parameters for granular flows

A hybrid 1D-2D Lagrangian solver with moving coupling to simulate dam-break flow

A two-particle approach for dry high density-ratio granular collapse

Peridynamic mesh-free simulation of glass and metal beads column collapses

MPS modeling of cross-sectional averaged shallow water flows with open boundaries using TVD-MacCormack predictor-corrector

Development of explicit moving particle simulation method with applications

Semi-Analytical Modeling of Geological Features Based Heterogeneous Reservoirs Using the Boundary Element Method

YEE-CHUNG JIN Information

University

Position

___

Citations(all)

2958

Citations(since 2020)

1117

Cited By

2244

hIndex(all)

27

hIndex(since 2020)

17

i10Index(all)

61

i10Index(since 2020)

31

Email

University Profile Page

University of Regina

Google Scholar

View Google Scholar Profile

YEE-CHUNG JIN Skills & Research Interests

water

fluid

model

Top articles of YEE-CHUNG JIN

Title

Journal

Author(s)

Publication Date

Design optimization of sloshing tank using weakly compressible mesh free model

Ocean Engineering

DongXian Li

Huiwen Xiao

Yee-Chung Jin

2023/9/15

Numerical analysis of the effect of replacing the start-up frictional coefficient with soil strength parameters for granular flows

Acta Geotechnica

Olalekan Rufai

Yee-Chung Jin

2023/9

A hybrid 1D-2D Lagrangian solver with moving coupling to simulate dam-break flow

Advances in Water Resources

Payam Sarkhosh

Yee-Chung Jin

2023/8/1

A two-particle approach for dry high density-ratio granular collapse

Powder Technology

Olalekan Rufai

Yee-Chung Jin

YC Tai

2023/1/15

Peridynamic mesh-free simulation of glass and metal beads column collapses

International Journal of Mechanical Sciences

Tibing Xu

Yee-Chung Jin

Yih-Chin Tai

2023/10/15

MPS modeling of cross-sectional averaged shallow water flows with open boundaries using TVD-MacCormack predictor-corrector

Journal of Hydrology

Payam Sarkhosh

Yee-Chung Jin

2022/5/1

Development of explicit moving particle simulation method with applications

SC15 Poster (Nov. 2015)

Kohei Murotani

Seiichi Koshizuka

Masao Ogino

Ryuji Shioya

2015

Semi-Analytical Modeling of Geological Features Based Heterogeneous Reservoirs Using the Boundary Element Method

Minerals

Chang Su

Gang Zhao

Yee-Chung Jin

Wanju Yuan

2022/5/24

Two-dimensional continuum modelling granular column collapse by non-local peridynamics in a mesh-free method with rheology

Journal of Fluid Mechanics

Tibing Xu

Yee-Chung Jin

2021/6

MPS‐Based Model to Solve One‐Dimensional Shallow Water Equations

Water Resources Research

Payam Sarkhosh

Yee‐Chung Jin

2021/4

Multiscale simulation of atomization process and droplet particles diffusion of pressure-swirl nozzle

Powder technology

Haiming Yu

Yee-Chung Jin

Weimin Cheng

Xianhang Yang

Xiaolong Peng

...

2021/2/1

Mesh-free peridynamic coupled simulation of impacting collapse of a granular column with various heights

Physics of Fluids

Tibing Xu

Yee-Chung Jin

Yih-Chin Tai

2021/10/1

Implicit finite-volume scheme to solve coupled Saint-Venant and Darcy–Forchheimer equations for modeling flow through porous structures

Water Resources Management

Payam Sarkhosh

Amgad Salama

Yee-Chung Jin

2021/10

Improvement and application of weakly compressible moving particle semi-implicit method with kernel-smoothing algorithm

Computers & Mathematics with Applications

Huiwen Xiao

Yee-Chung Jin

2021/10/1

Investigating the physical characteristics of dense granular flows by coupling the weakly compressible moving particle semi-implicit method with the rheological model

Acta Geotechnica

Luoyilang Ke

Yee-Chung Jin

Tibing Xu

Yih-Chin Tai

2020/7

A numerical and experimental investigation of wave generated by submerged landslides

Ocean Engineering

HaoJia Li

Yee-Chung Jin

Yih-Chin Tai

2020/12/15

A one-dimensional semi-implicit finite volume modeling of non-inertia wave through rockfill dams

Journal of Hydroinformatics

Payam Sarkhosh

Amgad Salama

Yee-Chung Jin

2020/11/1

See List of Professors in YEE-CHUNG JIN University(University of Regina)

Co-Authors

H-index: 22
Ahmad Shakibaeinia

Ahmad Shakibaeinia

École Polytechnique de Montréal

H-index: 21
Amir Reza Zarrati

Amir Reza Zarrati

Amirkabir University of Technology

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