Manolis Veveakis

Manolis Veveakis

Duke University

H-index: 29

North America-United States

About Manolis Veveakis

Manolis Veveakis, With an exceptional h-index of 29 and a recent h-index of 25 (since 2020), a distinguished researcher at Duke University, specializes in the field of Multiphysics Geomechanics, Theoretical and Applied Mechanics.

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

Frictional weakening of a granular sheared layer due to viscous rolling revealed by discrete element modeling

Chemical homogenization for non-mixing reactive interfaces in porous media

A Phase-Field Discrete Element Method to study chemo-mechanical coupling in granular materials

Weathering and creep in rocks modelled at the microscale

Solutions for Thermally-driven Reactive Transport and Porosity Evolution in Geothermal Systems (“Reactive Lauwerier Problem”)

An Oedometer Test under Acid Injection with a Discrete Element Model: the case of Debonding

A two-scale experimental study on the influence of biopolymer enhancement on drying granular materials

Path Signatures and Graph Neural Networks for Slow Earthquake Analysis: Better Together?

Manolis Veveakis Information

University

Position

___

Citations(all)

2198

Citations(since 2020)

1349

Cited By

1396

hIndex(all)

29

hIndex(since 2020)

25

i10Index(all)

48

i10Index(since 2020)

41

Email

University Profile Page

Duke University

Google Scholar

View Google Scholar Profile

Manolis Veveakis Skills & Research Interests

Multiphysics Geomechanics

Theoretical and Applied Mechanics

Top articles of Manolis Veveakis

Title

Journal

Author(s)

Publication Date

Frictional weakening of a granular sheared layer due to viscous rolling revealed by discrete element modeling

arXiv preprint arXiv:2310.15945

Manolis Veveakis

Hadrien Rattez

2023/10/24

Chemical homogenization for non-mixing reactive interfaces in porous media

arXiv preprint arXiv:2403.16770

Winston Lindqwister

Manolis Veveakis

Martin Lesueur

2024/3/25

A Phase-Field Discrete Element Method to study chemo-mechanical coupling in granular materials

arXiv preprint arXiv:2310.15718

Manolis Veveakis

Hadrien Rattez

2023/10/24

Weathering and creep in rocks modelled at the microscale

Hadrien Rattez

Alexandre Sac-Morane

Manolis Veveakis

2024/3/7

Solutions for Thermally-driven Reactive Transport and Porosity Evolution in Geothermal Systems (“Reactive Lauwerier Problem”)

Hydrology and Earth System Sciences Discussions

Roi Roded

Einat Aharonov

Piotr Szymczak

Manolis Veveakis

Boaz Lazar

...

2024/2/6

An Oedometer Test under Acid Injection with a Discrete Element Model: the case of Debonding

arXiv preprint arXiv:2404.05390

Alexandre Sac-Morane

Hadrien Rattez

Manolis Veveakis

2024/4/8

A two-scale experimental study on the influence of biopolymer enhancement on drying granular materials

Géotechnique Letters

R Chen

M Veveakis

2024/2/23

Path Signatures and Graph Neural Networks for Slow Earthquake Analysis: Better Together?

arXiv preprint arXiv:2402.03558

Hans Riess

Manolis Veveakis

Michael M Zavlanos

2024/2/5

Slow Slip Events in New Zealand: Irregular, yet Predictable?

Geophysical Research Letters

Sandro Truttmann

T Poulet

Laura Wallace

Marco Herwegh

M Veveakis

2024/3/28

In memoriam of Patrick Selvadurai

Geomechanics for Energy and the Environment

Alessio Ferrari

Tomasz Hueckel

Lyesse Laloui

Panos Papanastasiou

Jean–Michel Pereira

...

2024/2/23

InSAR-Informed In-Situ Monitoring for Deep-Seated Landslides: Insights from El Forn (Andorra)

EGUsphere

Rachael Lau

Carolina Seguí

Tyler Waterman

Nathaniel Chaney

Manolis Veveakis

2024/2/23

A data-driven approach to physics-based risk models for deep-seated landslides

Rachael E Lau

Manolis Veveakis

2024/3/27

Predicting the Mechanical Response Profile of Porous Materials Via Microstructure-Informed Neural Networks

Available at SSRN 4605136

Winston Lindqwister

Jacob Peloquin

Laura Dalton

Ken Gall

Manolis Veveakis

2023/8/4

Temperature dependence of soil-structure interface behaviour in the context of thermally-activated piles: A review

Arianna Lupattelli

Diana Salciarini

Francesco Cecinato

Manolis Veveakis

Teresa Maria Bodas Freitas

...

2023/12/1

A thermo-poro-mechanical model to simulate and predict landslide evolution: a physics-based method applied to the Ruinon Landslide (Italian Alps)

EGU General Assembly Conference Abstracts

Andrea Morcioni

Tiziana Apuani

Francesco Cecinato

Manolis Veveakis

2023/5

Landslide susceptibility evaluation in Alpine environment: 2. Thermo-hydro-mechanical modeling for the response to climate-related variables

Geomechanics for Energy and the Environment

Andrea Morcioni

Tiziana Apuani

Francesco Cecinato

Manolis Veveakis

2023/12/1

Geomechanics for Energy and the Environment

Georgios Michas

Filippos Vallianatos

2019

Prediction of the evolution of a large landslide under different climate scenarios: a physics-based model applied to the Ruinon Landslide (Italian Alps)

A Morcioni

T Apuani

A Citrini

F Cecinato

M Veveakis

2023/11/15

The physics of desiccation cracks 2: Modeling and prediction of the crack patterns

Geomechanics for Energy and the Environment

Ruoyu Chen

Winston Lindqwister

Fei Wu

Boleslaw Mielniczuk

Tomasz Hueckel

...

2023/9/1

The physics of desiccation cracks 1: Ductile fracturing and dependence on relative humidity

Geomechanics for Energy and the Environment

Ruoyu Chen

Winston Lindqwister

Fei Wu

Boleslaw Mielniczuk

Tomasz Hueckel

...

2023/9/1

See List of Professors in Manolis Veveakis University(Duke University)