Chunwei Zhang

About Chunwei Zhang

Chunwei Zhang, With an exceptional h-index of 12 and a recent h-index of 12 (since 2020), a distinguished researcher at Tokyo Institute of Technology, specializes in the field of computational fluid mechanics, flow and transport in porous media, single/multiphase flow, pore scale modeling.

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

ランダムに分布したポア構造を有する多孔質におけるハイネスジャンプと毛管圧浸透の空隙スケール数値シミュレーションと CO2 地下貯留への適用

Interpreting dynamics of snap-off in a constricted capillary from the energy dissipation principle

Influence of stagnant zones on solute transport in heterogeneous porous media at the pore scale

Dissolution mass transfer of trapped phase in porous media

Effects of Dissolution Fingering on Mass Transfer Rate in Three‐Dimensional Porous Media

Pore-scale investigation of wettability impact on residual nonaqueous phase liquid dissolution in natural porous media

Effect of gas generation by chemical reaction on viscous fingering in a Hele–Shaw cell

Experimental investigation of solute transport in variably saturated porous media using x-ray computed tomography

Chunwei Zhang Information

University

Position

___

Citations(all)

611

Citations(since 2020)

437

Cited By

64

hIndex(all)

12

hIndex(since 2020)

12

i10Index(all)

13

i10Index(since 2020)

13

Email

University Profile Page

Google Scholar

Chunwei Zhang Skills & Research Interests

computational fluid mechanics

flow and transport in porous media

single/multiphase flow

pore scale modeling

Top articles of Chunwei Zhang

ランダムに分布したポア構造を有する多孔質におけるハイネスジャンプと毛管圧浸透の空隙スケール数値シミュレーションと CO2 地下貯留への適用

Journal of MMIJ

2021/5/31

Interpreting dynamics of snap-off in a constricted capillary from the energy dissipation principle

Physics of Fluids

2021/3/1

Influence of stagnant zones on solute transport in heterogeneous porous media at the pore scale

Physics of Fluids

2021/3/1

Dissolution mass transfer of trapped phase in porous media

2021/1/25

Effects of Dissolution Fingering on Mass Transfer Rate in Three‐Dimensional Porous Media

Water Resources Research

2021/10

Pore-scale investigation of wettability impact on residual nonaqueous phase liquid dissolution in natural porous media

Science of the Total Environment

2021/9/15

Effect of gas generation by chemical reaction on viscous fingering in a Hele–Shaw cell

Physics of Fluids

2021/9/1

Experimental investigation of solute transport in variably saturated porous media using x-ray computed tomography

ISH Journal of Hydraulic Engineering

2013/9/1

Pore-scale study of in-situ surfactant flooding with strong oil emulsification in sandstone based on X-ray microtomography

Journal of Industrial and Engineering Chemistry

2021/6/25

Effect of capillary number on morphological characterizations of trapped gas bubbles: Study by using micro-tomography

International Journal of Heat and Mass Transfer

2020/12/1

Investigation on the effect of particle size in dissolution mass transfer inside porous media with micro-tomography

AIP Conference Proceedings

2020/7/17

Experimental study on the displacement patterns and the phase diagram of immiscible fluid displacement in three-dimensional porous media

Advances in water resources

2020/6/1

Three-dimensional fingering structures in immiscible flow at the crossover from viscous to capillary fingering

International Journal of Multiphase Flow

2020/1/1

See List of Professors in Chunwei Zhang University(Tokyo Institute of Technology)

Co-Authors

academic-engine