Showing 46 publications by Scott Brown
Scaled Physical Modelling of Floating Offshore Wind Turbines Using a Neural Network‐Based Surrogate Model for Aerodynamic Emulation
Edwards EC, Barbour E, Tosdevin T, Ransley E, Monk K et al. (2025), Wind Energy, 28(10)
BibTeX
@article{scaledphysicalm-2025/8,
title={Scaled Physical Modelling of Floating Offshore Wind Turbines Using a Neural Network‐Based Surrogate Model for Aerodynamic Emulation},
author={Edwards EC, Barbour E, Tosdevin T, Ransley E, Monk K et al.},
journal={Wind Energy},
volume={28},
number={e70052},
publisher={Wiley},
year = "2025"
}
On the sensitivity of short design waves for semi-submersible wind platforms
Brown SA, Tosdevin T, Hann M & Greaves DM (2025), Ocean Engineering, 328, 121054
On the development and application of short design events for the prediction of extreme responses of floating offshore wind turbines
Tosdevin T, Brown S, Flavià FF, Hann M, Simmonds D et al. (2025), Ocean Engineering, 327, 120929
BibTeX
@article{onthedevelopmen-2025/5,
title={On the development and application of short design events for the prediction of extreme responses of floating offshore wind turbines},
author={Tosdevin T, Brown S, Flavià FF, Hann M, Simmonds D et al.},
journal={Ocean Engineering},
volume={327},
pages={120929},
publisher={Elsevier},
year = "2025"
}
Experimental–numerical model comparison of a dynamic power cable for a floating offshore wind turbine
Holcombe A, Hann M, Brown S, Cheng S, Rawlinson-Smith R et al. (2025), Ocean Engineering, 321, 120384
BibTeX
@article{experimentalnum-2025/3,
title={Experimental–numerical model comparison of a dynamic power cable for a floating offshore wind turbine},
author={Holcombe A, Hann M, Brown S, Cheng S, Rawlinson-Smith R et al.},
journal={Ocean Engineering},
volume={321},
pages={120384},
publisher={Elsevier},
year = "2025"
}
Modelling the hydrodynamic response of a floating offshore wind turbine – a comparative study
Yu S, Ransley E, Qian L, Zhou Y, Brown S et al. (2025), Applied Ocean Research, 155, 104441
BibTeX
@article{modellingthehyd-2025/2,
title={Modelling the hydrodynamic response of a floating offshore wind turbine – a comparative study},
author={Yu S, Ransley E, Qian L, Zhou Y, Brown S et al.},
journal={Applied Ocean Research},
volume={155},
pages={104441},
publisher={Elsevier},
year = "2025"
}
CCP-WSI Blind Test Series 5: Numerical investigation of isothermal sloshing in a circular tank using OpenFOAM
Brown S, Francis V, Colville S, Greaves D & Johanessen IP (2025), Proceedings of the International Offshore and Polar Engineering Conference, 2299-2306
BibTeX
@inproceedings{ccpwsiblindtest-2025/1,
title={CCP-WSI Blind Test Series 5: Numerical investigation of isothermal sloshing in a circular tank using OpenFOAM},
author={Brown S, Francis V, Colville S, Greaves D & Johanessen IP},
pages={2299-2306},
year = "2025"
}
Sensitivity of small-scale global models of dynamic power cables to model material properties
Holcombe A, Hann M, Brown S, Cheng S, Rawlinson-Smith R et al. (2024), 583-589
Trends in floating offshore wind platforms: A review of early-stage devices
Edwards EC, Holcombe A, Brown S, Ransley E, Hann M et al. (2024), Renewable and Sustainable Energy Reviews, 193, 114271
BibTeX
@article{trendsinfloatin-2024/4,
title={Trends in floating offshore wind platforms: A review of early-stage devices},
author={Edwards EC, Holcombe A, Brown S, Ransley E, Hann M et al.},
journal={Renewable and Sustainable Energy Reviews},
volume={193},
pages={114271},
publisher={Elsevier},
year = "2024"
}
On the Use of Response Conditioned Focused Wave and Wind Events for the Prediction of Design Loads
Tosdevin T, Edwards E, Holcombe A, Brown S, Ransley E et al. (2023)
BibTeX
@inproceedings{ontheuseofrespo-2023/12,
title={On the Use of Response Conditioned Focused Wave and Wind Events for the Prediction of Design Loads},
author={Tosdevin T, Edwards E, Holcombe A, Brown S, Ransley E et al.},
booktitle={ASME 2023 5th International Offshore Wind Technical Conference},
year = "2023"
}
On the selection of design waves for predicting extreme motions of a floating offshore wind turbine
Brown SA, Tosdevin T, Jin S, Hann M, Simmonds D et al. (2023), Ocean Engineering, 290, 116400
BibTeX
@article{ontheselectiono-2023/12,
title={On the selection of design waves for predicting extreme motions of a floating offshore wind turbine},
author={Brown SA, Tosdevin T, Jin S, Hann M, Simmonds D et al.},
journal={Ocean Engineering},
volume={290},
pages={116400},
publisher={Elsevier},
year = "2023"
}
Evolution of floating offshore wind platforms: A review of at-sea devices
Edwards EC, Holcombe A, Brown S, Ransley E, Hann M et al. (2023), Renewable and Sustainable Energy Reviews, 183, 113416
BibTeX
@article{evolutionoffloa-2023/9,
title={Evolution of floating offshore wind platforms: A review of at-sea devices},
author={Edwards EC, Holcombe A, Brown S, Ransley E, Hann M et al.},
journal={Renewable and Sustainable Energy Reviews},
volume={183},
pages={113416},
publisher={Elsevier},
year = "2023"
}
Real-Time Hybrid Testing of a Floating Offshore Wind Turbine Using a Surrogate-Based Aerodynamic Emulator
Ransley EJ, Brown SA, Edwards EC, Tosdevin T, Monk K et al. (2023), ASME Open Journal of Engineering, 2
BibTeX
@article{realtimehybridt-2023/1,
title={Real-Time Hybrid Testing of a Floating Offshore Wind Turbine Using a Surrogate-Based Aerodynamic Emulator},
author={Ransley EJ, Brown SA, Edwards EC, Tosdevin T, Monk K et al.},
journal={ASME Open Journal of Engineering},
volume={2},
publisher={ASME International},
year = "2023"
}
Modelling the Hydrodynamic Response of a Floating Offshore Wind Turbine Using OpenFOAM and a Quasi-static Mooring Model
Ransley EJ, Brown SA, Greaves DM & Hann MR (2023), Proceedings of the International Offshore and Polar Engineering Conference, 483-490
BibTeX
@inproceedings{modellingthehyd-2023/1,
title={Modelling the Hydrodynamic Response of a Floating Offshore Wind Turbine Using OpenFOAM and a Quasi-static Mooring Model},
author={Ransley EJ, Brown SA, Greaves DM & Hann MR},
pages={483-490},
year = "2023"
}
Investigation of wave-driven hydroelastic interactions using numerical and physical modelling approaches
Brown SA, Xie N, Hann MR & Greaves DM (2022), Applied Ocean Research, 129, 103363
BibTeX
@article{investigationof-2022/12,
title={Investigation of wave-driven hydroelastic interactions using numerical and physical modelling approaches},
author={Brown SA, Xie N, Hann MR & Greaves DM},
journal={Applied Ocean Research},
volume={129},
pages={103363},
publisher={Elsevier},
year = "2022"
}
Real-Time Hybrid Testing of a Floating Offshore Wind Turbine Using a Surrogate-Based Aerodynamic Emulator
Ransley E, Brown S, Edwards E, Tosdevin T, Monk K et al. (2022)
BibTeX
@inproceedings{realtimehybridt-2022/12,
title={Real-Time Hybrid Testing of a Floating Offshore Wind Turbine Using a Surrogate-Based Aerodynamic Emulator},
author={Ransley E, Brown S, Edwards E, Tosdevin T, Monk K et al.},
booktitle={ASME 2022 4th International Offshore Wind Technical Conference},
year = "2022"
}
OC6 Phase Ib: Validation of the CFD predictions of difference-frequency wave excitation on a FOWT semisubmersible
Wang L, Robertson A, Jonkman J, Yu Y-H, Koop A et al. (2021), Ocean Engineering, 241, 110026-110026
BibTeX
@article{ocphaseibvalida-2021/12,
title={OC6 Phase Ib: Validation of the CFD predictions of difference-frequency wave excitation on a FOWT semisubmersible},
author={Wang L, Robertson A, Jonkman J, Yu Y-H, Koop A et al.},
journal={Ocean Engineering},
volume={241},
number={110026},
pages={110026-110026},
publisher={Elsevier BV},
year = "2021"
}
Numerical simulation of parametric resonance in point absorbers using a simplified model
Kurniawan A, Tran TT, Brown SA, Eskilsson C, Orszaghova J et al. (2021), IET Renewable Power Generation, 15(14), 3186-3205
BibTeX
@article{numericalsimula-2021/10,
title={Numerical simulation of parametric resonance in point absorbers using a simplified model},
author={Kurniawan A, Tran TT, Brown SA, Eskilsson C, Orszaghova J et al.},
journal={IET Renewable Power Generation},
volume={15},
pages={3186-3205},
publisher={Institution of Engineering and Technology (IET)},
year = "2021"
}
Focused wave interactions with floating structures: A blind comparative study
Ransley EJ, Brown SA, Hann M, Greaves DM, Windt C et al. (2021), Proceedings of the Institution of Civil Engineers - Engineering and Computational Mechanics, 174(1), 1-34
BibTeX
@article{focusedwaveinte-2021/3,
title={Focused wave interactions with floating structures: A blind comparative study},
author={Ransley EJ, Brown SA, Hann M, Greaves DM, Windt C et al.},
journal={Proceedings of the Institution of Civil Engineers - Engineering and Computational Mechanics},
volume={174},
pages={1-34},
publisher={Emerald},
year = "2021"
}
Assessing focused wave impacts on floating WECs using OpenFOAM
Brown SA, Ransley EJ & Greaves DM (2021), Proceedings of the Institution of Civil Engineers - Engineering and Computational Mechanics, 174(1), 1-28
BibTeX
@article{assessingfocuse-2021/3,
title={Assessing focused wave impacts on floating WECs using OpenFOAM},
author={Brown SA, Ransley EJ & Greaves DM},
journal={Proceedings of the Institution of Civil Engineers - Engineering and Computational Mechanics},
volume={174},
pages={1-28},
publisher={Emerald},
year = "2021"
}
Wave–Structure Interactions of Flexible Bags with Elastic Tendons: Application to Wave Energy Conversion
Kurniawan A, Brown S, Forehand D & Wolgamot H (2021), Journal of Waterway, Port, Coastal, and Ocean Engineering, 147(1)
BibTeX
@article{wavestructurein-2021/1,
title={Wave–Structure Interactions of Flexible Bags with Elastic Tendons: Application to Wave Energy Conversion},
author={Kurniawan A, Brown S, Forehand D & Wolgamot H},
journal={Journal of Waterway, Port, Coastal, and Ocean Engineering},
volume={147},
number={04020045},
publisher={American Society of Civil Engineers (ASCE)},
year = "2021"
}
On the impact of motion-thrust coupling in floating tidal energy applications
Brown SA, Ransley EJ, Xie N, Monk K, De Angelis GM et al. (2021), Applied Energy, 282, 116246
A coupled rans-vof and actuator disk model for floating offshore wind turbines
Ransley EJ, Brown SA, Hann MR & Greaves DM (2021), Proceedings of the International Offshore and Polar Engineering Conference, 1474-1480
BibTeX
@inproceedings{acoupledransvof-2021/1,
title={A coupled rans-vof and actuator disk model for floating offshore wind turbines},
author={Ransley EJ, Brown SA, Hann MR & Greaves DM},
pages={1474-1480},
year = "2021"
}
Development of a fully nonlinear, coupled numerical model for assessment of floating tidal stream concepts
Brown SA, Ransley EJ, Zheng S, Xie N, Howey B et al. (2020), Ocean Engineering, 218, 108253
BibTeX
@article{developmentofaf-2020/12,
title={Development of a fully nonlinear, coupled numerical model for assessment of floating tidal stream concepts},
author={Brown SA, Ransley EJ, Zheng S, Xie N, Howey B et al.},
journal={Ocean Engineering},
volume={218},
pages={108253},
publisher={Elsevier},
year = "2020"
}
Loads on a Point-Absorber Wave Energy Converter in Regular and Focused Extreme Wave Events
Katsidoniotaki E, Ransley E, Brown S, Palm J, Engström J et al. (2020), Volume 9: Ocean Renewable Energy
BibTeX
@inproceedings{loadsonapointab-2020/8,
title={Loads on a Point-Absorber Wave Energy Converter in Regular and Focused Extreme Wave Events},
author={Katsidoniotaki E, Ransley E, Brown S, Palm J, Engström J et al.},
booktitle={ASME 2020 39th International Conference on Ocean, Offshore and Arctic Engineering},
year = "2020"
}
Developing a coupled turbine thrust methodology for floating tidal stream concepts: Verification under prescribed motion
Brown SA, Ransley EJ & Greaves DM (2020), Renewable Energy, 147, 529-540
BibTeX
@article{developingacoup-2020/3,
title={Developing a coupled turbine thrust methodology for floating tidal stream concepts: Verification under prescribed motion},
author={Brown SA, Ransley EJ & Greaves DM},
journal={Renewable Energy},
volume={147},
pages={529-540},
publisher={Elsevier},
year = "2020"
}
A Blind Comparative Study of Focused Wave Interactions with Floating Structures (CCP-WSI Blind Test Series 3)
Ransley E, Yan S, Brown S, Hann M, Graham D et al. (2020), International Journal of Offshore and Polar Engineering, 30(1), 1-10
BibTeX
@article{ablindcomparati-2020/3,
title={A Blind Comparative Study of Focused Wave Interactions with Floating Structures (CCP-WSI Blind Test Series 3)},
author={Ransley E, Yan S, Brown S, Hann M, Graham D et al.},
journal={International Journal of Offshore and Polar Engineering},
volume={30},
pages={1-10},
publisher={International Society of Offshore and Polar Engineers},
year = "2020"
}
Quantifying the Predictive Capability of OpenFOAM 5.0: Focused Wave Impacts with Floating Bodies
Brown SA, Ransley EJ, Musiedlak P-H & Greaves D (2020), International Journal of Offshore and Polar Engineering, 30(1), 20-27
BibTeX
@article{quantifyingthep-2020/3,
title={Quantifying the Predictive Capability of OpenFOAM 5.0: Focused Wave Impacts with Floating Bodies},
author={Brown SA, Ransley EJ, Musiedlak P-H & Greaves D},
journal={International Journal of Offshore and Polar Engineering},
volume={30},
pages={20-27},
publisher={International Society of Offshore and Polar Engineers},
year = "2020"
}
Starting a wave structure interaction CFD simulation from an advance time: Hot-start
Musiedlak PH, Ransley E, Brown SA, Child BFM, Hann M et al. (2020), Proceedings of the 6th European Conference on Computational Mechanics Solids Structures and Coupled Problems Eccm 2018 and 7th European Conference on Computational Fluid Dynamics Ecfd 2018, 3224-3235
BibTeX
@inproceedings{startingawavest-2020/1,
title={Starting a wave structure interaction CFD simulation from an advance time: Hot-start},
author={Musiedlak PH, Ransley E, Brown SA, Child BFM, Hann M et al.},
pages={3224-3235},
year = "2020"
}
Quantifying the Predictive Capability of OpenFOAM 4.1: Focused Wave Interactions with a Fixed FPSO
Brown SA, Musiedlak P-H, Ransley EJ & Greaves D (2019), International Journal of Offshore and Polar Engineering, 29(2), 158-164
BibTeX
@article{quantifyingthep-2019/6,
title={Quantifying the Predictive Capability of OpenFOAM 4.1: Focused Wave Interactions with a Fixed FPSO},
author={Brown SA, Musiedlak P-H, Ransley EJ & Greaves D},
journal={International Journal of Offshore and Polar Engineering},
volume={29},
pages={158-164},
publisher={International Society of Offshore and Polar Engineers},
year = "2019"
}
Feasibility Study of Mooring Lines Design for a Floating Tidal Turbine Platform Using Double Hull Structure
Arini NR, Thies PR, Johanning L, Ransley E, Brown S et al. (2019)
A Blind Comparative Study of Focused Wave Interactions with a Fixed FPSO-like Structure (CCP-WSI Blind Test Series 1)
Ransley E, Yan S, Brown SA, Mai T, Graham D et al. (2019), International Journal of Offshore and Polar Engineering, 29(2), 113-127
BibTeX
@article{ablindcomparati-2019/6,
title={A Blind Comparative Study of Focused Wave Interactions with a Fixed FPSO-like Structure (CCP-WSI Blind Test Series 1)},
author={Ransley E, Yan S, Brown SA, Mai T, Graham D et al.},
journal={International Journal of Offshore and Polar Engineering},
volume={29},
pages={113-127},
publisher={International Society of Offshore and Polar Engineers},
year = "2019"
}
Numerical investigation of focused wave impacts on floating wave energy converters using openfoam
Brown SA, Ransley EJ, Musiedlak PH & Greaves D (2019), Proceedings of the International Offshore and Polar Engineering Conference, 3, 3044-3050
BibTeX
@inproceedings{numericalinvest-2019/1,
title={Numerical investigation of focused wave impacts on floating wave energy converters using openfoam},
author={Brown SA, Ransley EJ, Musiedlak PH & Greaves D},
pages={3044-3050},
year = "2019"
}
Validation of a coupled cfd model for evaluating floating tidal systems
Brown SA, Ransley EJ, Xie N, Greaves DM, Johanning L et al. (2019), Proceedings of the International Offshore and Polar Engineering Conference, 3, 2800-2807
BibTeX
@inproceedings{validationofaco-2019/1,
title={Validation of a coupled cfd model for evaluating floating tidal systems},
author={Brown SA, Ransley EJ, Xie N, Greaves DM, Johanning L et al.},
pages={2800-2807},
year = "2019"
}
Concept development for deployment of a modular, floating, tidal-stream device
Ransley EJ, Brown S, Xie N, Greaves D, Nicholls-Lee R et al. (2019), Advances in Renewable Energies Offshore Proceedings of the 3rd International Conference on Renewable Energies Offshore Renew 2018, 175-180
BibTeX
@inproceedings{conceptdevelopm-2019/1,
title={Concept development for deployment of a modular, floating, tidal-stream device},
author={Ransley EJ, Brown S, Xie N, Greaves D, Nicholls-Lee R et al.},
pages={175-180},
year = "2019"
}
Wave tank experiments of a floating, tidal-stream energy device
Xie N, Ransley EJ, Brown S, Greaves D, Nicholls-Lee R et al. (2019), Advances in Renewable Energies Offshore Proceedings of the 3rd International Conference on Renewable Energies Offshore Renew 2018, 203-207
BibTeX
@inproceedings{wavetankexperim-2019/1,
title={Wave tank experiments of a floating, tidal-stream energy device},
author={Xie N, Ransley EJ, Brown S, Greaves D, Nicholls-Lee R et al.},
pages={203-207},
year = "2019"
}
Wave tank experiments of a floating, tidal-stream energy device
Xie N, Ransley EJ, Brown S, Greaves D, Nicholls-Lee R et al. (2019), 2019, 203-207
BibTeX
@misc{wavetankexperim-2019/1,
title={Wave tank experiments of a floating, tidal-stream energy device},
author={Xie N, Ransley EJ, Brown S, Greaves D, Nicholls-Lee R et al.},
year = "2019"
}
Concept development for deployment of a modular, floating, tidal-stream device
Ransley EJ, Brown S, Xie N, Greaves D, Nicholls-Lee R et al. (2019), 2019, 175-180
BibTeX
@misc{conceptdevelopm-2019/1,
title={Concept development for deployment of a modular, floating, tidal-stream device},
author={Ransley EJ, Brown S, Xie N, Greaves D, Nicholls-Lee R et al.},
year = "2019"
}
Numerical simulation of focused wave interactions with a fixed FPSO using OpenFOAM 4.1
Brown SA, Musiedlak PH, Ransley EJ & Greaves D (2018), Proceedings of the International Offshore and Polar Engineering Conference, 2018-June, 1498-1503
BibTeX
@inproceedings{numericalsimula-2018/1,
title={Numerical simulation of focused wave interactions with a fixed FPSO using OpenFOAM 4.1},
author={Brown SA, Musiedlak PH, Ransley EJ & Greaves D},
pages={1498-1503},
year = "2018"
}
Evaluation of turbulence closure models under spilling and plunging breakers in the surf zone
Brown SA, Greaves DM, Magar V & Conley DC (2016), Coastal Engineering, 114, 177-193
Clinical governance: risk assessment in SUDEP
Brown S, Shankar R, Cox D, M. McLean B & Jory C (2013), Clinical Governance: An International Journal, 18(4), 325-331
The effect of device geometry on the performance of a wave energy converter
Edwards E, Whitlam C, Chapman J, Hughes J, Redfearn B et al. (0), Communications Engineering
BibTeX
@article{theeffectofdevi-/,
title={The effect of device geometry on the performance of a wave energy converter},
author={Edwards E, Whitlam C, Chapman J, Hughes J, Redfearn B et al.},
journal={Communications Engineering}
}
OC6 Phase Ia: CFD Simulations of the Free-Decay Motion of the DeepCwind Semisubmersible
Wang L, Robertson A, Jonkman J, Kim J, Shen Z-R et al. (0), Energies, 15(1), 389-389
Laboratory investigation on short design wave extreme responses for floating hinged-raft wave energy converters
Jin S, Brown SA, Tosdevin T, Hann MR & Greaves DM (0), Frontiers in Energy Research, 10, 1069108
BibTeX
@article{laboratoryinves-/,
title={Laboratory investigation on short design wave extreme responses for floating hinged-raft wave energy converters},
author={Jin S, Brown SA, Tosdevin T, Hann MR & Greaves DM},
journal={Frontiers in Energy Research},
volume={10},
pages={1069108},
publisher={Frontiers}
}
AN EVALUATION OF RANS TURBULENCE CLOSURE MODELS FOR SPILLING BREAKERS
Brown SA, Magar V, Greaves DM & Conley DC (0), Coastal Engineering Proceedings(34), 5
Ocean Energy Systems Wave Energy Modeling Task 10.4: Numerical Modeling of a Fixed Oscillating Water Column
Bingham HB, Yu Y-H, Nielsen K, Tran TT, Kim K-H et al. (0), Energies, 14(6), 1718
Highly Accurate Experimental Heave Decay Tests with a Floating Sphere: A Public Benchmark Dataset for Model Validation of Fluid–Structure Interaction
Kramer MB, Andersen J, Thomas S, Bendixen FB, Bingham H et al. (0), Energies, 14(2), 269-269
BibTeX
@article{highlyaccuratee-/,
title={Highly Accurate Experimental Heave Decay Tests with a Floating Sphere: A Public Benchmark Dataset for Model Validation of Fluid–Structure Interaction},
author={Kramer MB, Andersen J, Thomas S, Bendixen FB, Bingham H et al.},
journal={Energies},
volume={14},
pages={269-269},
publisher={MDPI AG}
}