Simon Cox

Simon Cox

Aberystwyth University

H-index: 31

Europe-United Kingdom

About Simon Cox

Simon Cox, With an exceptional h-index of 31 and a recent h-index of 16 (since 2020), a distinguished researcher at Aberystwyth University, specializes in the field of Foams, Rheology.

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

Effects of liquid fraction and contact angle on structure and coarsening in two-dimensional foams

Predicting yielding in the pressure-driven flow of a Bingham fluid in a serpentine channel

Interface shapes in microfluidic porous media: conditions allowing steady, simultaneous two-phase flow

Prediction of Interface Shape and Capillary Pressure in an Idealized Pore Structure: Effect of Grain Size

Prediction of the capillary pressure of fluid surrounding a cylinder representing an idealized rock structure in porous media

Effect of Contact Angle on Capillary Pressure and Liquid Recovery from Angular Pore Channels

Collapse of a hemicatenoid bounded by a solid wall: instability and dynamics driven by surface Plateau border friction

Enhanced Oil Recovery from Polygonal Pores: effects of contact angle

Simon Cox Information

University

Position

___

Citations(all)

3670

Citations(since 2020)

1273

Cited By

2900

hIndex(all)

31

hIndex(since 2020)

16

i10Index(all)

81

i10Index(since 2020)

31

Email

University Profile Page

Google Scholar

Simon Cox Skills & Research Interests

Foams

Rheology

Top articles of Simon Cox

Effects of liquid fraction and contact angle on structure and coarsening in two-dimensional foams

arXiv preprint arXiv:2312.08014

2023/12/13

Simon Cox
Simon Cox

H-Index: 14

Predicting yielding in the pressure-driven flow of a Bingham fluid in a serpentine channel

Journal of Non-Newtonian Fluid Mechanics

2023/12/1

Interface shapes in microfluidic porous media: conditions allowing steady, simultaneous two-phase flow

Transport in Porous Media

2023/3

Prediction of Interface Shape and Capillary Pressure in an Idealized Pore Structure: Effect of Grain Size

2022/6/6

Prediction of the capillary pressure of fluid surrounding a cylinder representing an idealized rock structure in porous media

The European Physical Journal Plus

2022/4/8

Afshin Davarpanah
Afshin Davarpanah

H-Index: 24

Simon Cox
Simon Cox

H-Index: 14

Effect of Contact Angle on Capillary Pressure and Liquid Recovery from Angular Pore Channels

arXiv preprint arXiv:2202.10129

2022/2/21

Afshin Davarpanah
Afshin Davarpanah

H-Index: 24

Simon Cox
Simon Cox

H-Index: 14

Collapse of a hemicatenoid bounded by a solid wall: instability and dynamics driven by surface Plateau border friction

2022/6/14

Enhanced Oil Recovery from Polygonal Pores: effects of contact angle

2021/10/18

Capillary pressure prediction for fluid surrounding a cylindrical pillar representing an idealized rock structure in porous media

arXiv e-prints

2021/9

Afshin Davarpanah
Afshin Davarpanah

H-Index: 24

Simon Cox
Simon Cox

H-Index: 14

Actuating water droplets on liquid infused surfaces: A rickshaw for droplets

Physical Review Fluids

2021/8/11

The evolution of numerical methods for predicting the distribution of surfactant in the bubble-scale dynamics of foams

2021/6/1

Simon Cox
Simon Cox

H-Index: 14

Tudur Davies
Tudur Davies

H-Index: 4

Variation of average coordination number with liquid fraction for two-dimensional foams with finite contact angle

Philosophical Magazine

2021/5/3

Chenchen Feng
Chenchen Feng

H-Index: 13

Simon Cox
Simon Cox

H-Index: 14

Characterisation and optimisation of foams for varicose vein sclerotherapy

Biorheology

2021/1/1

An analytic velocity profile for pressure-driven flow of a Bingham fluid in a curved channel

Journal of Non-Newtonian Fluid Mechanics

2020/6/1

Bubble entrainment by a sphere falling through a horizontal soap foam

Europhysics Letters

2020/5/12

Effect of surfactant redistribution on the flow and stability of foam films

Proceedings of the Royal Society A

2020/2/26

Denny Vitasari
Denny Vitasari

H-Index: 5

Simon Cox
Simon Cox

H-Index: 14

Micro-mechanical prediction of the effect of surfactant concentration and external friction on the visco-elasto-plastic response of an aqueous foam

Soft Matter

2020

Simon Cox
Simon Cox

H-Index: 14

See List of Professors in Simon Cox University(Aberystwyth University)