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

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

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

Aberystwyth University

Google Scholar

View Google Scholar Profile

Simon Cox Skills & Research Interests

Foams

Rheology

Top articles of Simon Cox

Title

Journal

Author(s)

Publication Date

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

arXiv preprint arXiv:2312.08014

Jacob Morgan

Simon Cox

2023/12/13

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

Journal of Non-Newtonian Fluid Mechanics

TG Roberts

SJ Cox

2023/12/1

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

Transport in Porous Media

SJ Cox

A Davarpanah

WR Rossen

2023/3

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

A Davarpanah

S Cox

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

Afshin Davarpanah

Simon Cox

2022/4/8

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

arXiv preprint arXiv:2202.10129

Afshin Davarpanah

Simon Cox

2022/2/21

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

Raymond Goldstein

Adriana Pesci

Christophe Raufaste

2022/6/14

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

arXiv e-prints

Afshin Davarpanah

Simon Cox

2021/9

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

Physical Review Fluids

Christophe Raufaste

Simon J Cox

Franck Celestini

2021/8/11

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

Simon Cox

Tudur Davies

2021/6/1

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

Philosophical Magazine

Zefeng Jing

Chenchen Feng

Simon Cox

Stefan Hutzler

2021/5/3

Characterisation and optimisation of foams for varicose vein sclerotherapy

Biorheology

Tirion G Roberts

Simon J Cox

Andrew L Lewis

Stephen A Jones

2021/1/1

Enhanced Oil Recovery from Polygonal Pores: effects of contact angle

A Davarpanah

S Cox

2021/10/18

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

Journal of Non-Newtonian Fluid Mechanics

Tirion Gruffudd Roberts

Simon J Cox

2020/6/1

Bubble entrainment by a sphere falling through a horizontal soap foam

Europhysics Letters

SJ Cox

IT Davies

2020/5/12

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

Proceedings of the Royal Society A

Denny Vitasari

Simon Cox

Paul Grassia

Ruben Rosario

2020/2/26

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

Soft Matter

Francesca Zaccagnino

Simon Cox

2020

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