Thomas Adcock

Thomas Adcock

University of Oxford

H-index: 28

Europe-United Kingdom

About Thomas Adcock

Thomas Adcock, With an exceptional h-index of 28 and a recent h-index of 22 (since 2020), a distinguished researcher at University of Oxford, specializes in the field of Ocean engineering, tidal energy.

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

Laboratory study of wave-induced drift of large floating objects

A new Gaussian Process based model for non-linear wave loading on vertical cylinders

Enhancing tidal analysis and prediction using physics informed machine learning

Surface gravity wave-induced drift of floating objects in the diffraction regime

Transformed-FNV: Wave forces on a vertical cylinder—A free-surface formulation

Tidal stream energy resource assessment of the Pentland Firth: practical and accessible constraints

Data informed model test design with machine learning–an example in nonlinear wave load on a vertical cylinder

Influence of soil plasticity models on offshore wind turbine response

Thomas Adcock Information

University

Position

Department of engineering science

Citations(all)

2778

Citations(since 2020)

1967

Cited By

1484

hIndex(all)

28

hIndex(since 2020)

22

i10Index(all)

50

i10Index(since 2020)

44

Email

University Profile Page

University of Oxford

Google Scholar

View Google Scholar Profile

Thomas Adcock Skills & Research Interests

Ocean engineering

tidal energy

Top articles of Thomas Adcock

Title

Journal

Author(s)

Publication Date

Laboratory study of wave-induced drift of large floating objects

Qian Xiao

Mark McAllister

Thomas Adcock

Ton van den Bremer

2024/4/14

A new Gaussian Process based model for non-linear wave loading on vertical cylinders

Coastal Engineering

Tianning Tang

Gerard Ryan

Haoyu Ding

Xi Chen

Jun Zang

...

2024/3/1

Enhancing tidal analysis and prediction using physics informed machine learning

Thomas Monahan

Tianning Tang

Stephen Roberts

Thomas AA Adcock

2024

Surface gravity wave-induced drift of floating objects in the diffraction regime

Journal of Fluid Mechanics

Q Xiao

R Calvert

SQ Yan

TAA Adcock

TS van den Bremer

2024/2

Transformed-FNV: Wave forces on a vertical cylinder—A free-surface formulation

Coastal Engineering

PH Taylor

T Tang

TAA Adcock

J Zang

2024/4/1

Tidal stream energy resource assessment of the Pentland Firth: practical and accessible constraints

M Patel

A Smyth

Athanasios Angeloudis

Thomas AA Adcock

2024

Data informed model test design with machine learning–an example in nonlinear wave load on a vertical cylinder

Journal of Offshore Mechanics and Arctic Engineering

Tianning Tang

Haoyu Ding

Saishuai Dai

Xi Chen

Paul H Taylor

...

2024/4/1

Influence of soil plasticity models on offshore wind turbine response

Wind Energy

Gerard V Ryan

Thomas AA Adcock

Ross A McAdam

2024/2

Influence of wave spreading on offshore wind turbine design: a monopile supported DTU 10-MW Turbine Case Study

G Ryan

R McAdam

TA Adcock

2024

Extreme value analysis of wind droughts in Great Britain

Renewable Energy

Panit Potisomporn

Thomas AA Adcock

Christopher R Vogel

2024/2/1

A framework for early-stage coastal and estuarine tidal and mean sea surface correction from the Surface Water Ocean Topography mission

Thomas Monahan

Tianning Tang

Stephen Roberts

Thomas Adcock

2024/3/7

Experimental investigation of nonlinear forces on a monopile offshore wind turbine foundation under directionally spread waves

Haoyu Ding

Jun Zang

Guangwei Zhao

Tianning Tang

Paul H Taylor

...

2024

A machine learning architecture for including wave breaking in envelope-type wave models

Ocean Engineering

Yuxuan Liu

Debbie Eeltink

Ton S van den Bremer

Thomas AA Adcock

2024/8/1

An investigation of high-order harmonics in the pressure field around a vertical cylinder in steep wave conditions

Haoyu Ding

Jun Zang

Tianning Tang

Paul H Taylor

Thomas AA Adcock

...

2024/1/26

Discovering equations that govern wave breaking evolution using scientific machine learning

Tianning Tang

Yuntian Chen

Paul Taylor

Thomas Adcock

2024/3/7

Fragmentation of colliding liquid rims

arXiv preprint arXiv:2311.07300

Kaitao Tang

Thomas Adcock

Wouter Mostert

2023/11/13

Wave loads on ocean infrastructure increase as a result of waves passing over abrupt depth transitions

Journal of Ocean Engineering and Marine Energy

Zhenhao Li

Tianning Tang

Yan Li

Samuel Draycott

Ton S van den Bremer

...

2023/5

Recent experimental wave load study on bottom fixed vertical cylinder study at the Kelvin Hydrodynamics Laboratory

Guangwei Zhao

Saishuai Dai

Haoyu Ding

Tianning Tang

Paul Taylor

...

2023/6/27

Evaluating ERA5 reanalysis predictions of low wind speed events around the UK

Energy Reports

Panit Potisomporn

Thomas AA Adcock

Christopher R Vogel

2023/11/1

Dara informed model test design with machine learning-An example in nonlinear load on vertical cylinder

ASME 2023 42nd International Conference on Ocean, Offshore and Arctic Engineering

Tianning Tang

Haoyu Ding

Saishuai Dai

Xi Chen

Paul H Taylor

...

2023/6/11

See List of Professors in Thomas Adcock University(University of Oxford)

Co-Authors

H-index: 85
Guy Houlsby

Guy Houlsby

University of Oxford

H-index: 65
Roger Falconer

Roger Falconer

Cardiff University

H-index: 61
P Stansby

P Stansby

Manchester University

H-index: 44
Michael A Osborne

Michael A Osborne

University of Oxford

H-index: 35
Harry B. Bingham

Harry B. Bingham

Danmarks Tekniske Universitet

H-index: 28
Richard Willden

Richard Willden

University of Oxford

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