Projects per year
Personal profile
Research Interests
Dr. Campobasso is Senior Lecturer in Renewable Energy Systems and Computational Fluid Dynamics (CFD). His career started in the aircraft engine industry with BMW Rolls-Royce before moving to academia. His present research focuses on outstanding challenges in the wind energy sector, including the analysis and the optimisation of the interactions of offshore and onshore wind turbines and wind farms with the environment in which they operate. Some of his recent achievements are in the highly multi-disciplinary area of leading edge erosion of wind turbine blades, presently a major challenge in the sector. Blade erosion reduces turbine annual energy production and increases O&M costs. This problem is particularly severe offshore due to the harsh environment accelerating erosion and requiring costly O&M intervention. Using holistic turbine models combining low- and high-fidelity simulation codes, applied meteorology and machine learning, Dr. Campobasso and his group investigate the impact of climatic conditions on blade erosion and the dependence of energy yield and maintenance frequency on the installation site climate. He is also engaged with the development of digital twins and novel turbine control technologies to optimise wind turbine and farm productivity and maintenance.
He is interested in developing novel analysis technologies to assess and mitigate the present and long-term detrimental impact of wind turbine and wind farm wakes on both wind farm efficiency and durability, and the environment, e.g. the alterations of heat flux at sea/atmosphere interface due to the wakes of large wind turbine clusters. To accomplish this, he plans to investigate and exploit novel and more powerful high-performance computing (HPC) technologies (e.g. Graphics Processing Units) to enable higher resolution in the simulation of these problems, and advanced machine learning methods to enable faster exploitation of the developed knowledge.
Specific problems Dr. Campobasso and his group addressed include unsteady aerodynamics of horizontal and vertical axis wind turbines, investigation of oscillating wings to harvest tidal and estuarine energy, robust design optimisation of horizontal axis turbines accounting for uncertainty of the environmental conditions and engineering manufacturing processes. His group uses both high- and low-fidelity simulation codes, and he has developed large CFD codes supported by distributed and shared-memory parallel computing, including linear and nonlinear frequency-domain, and adjoint CFD codes.
His research benefits with longstanding collaborations with national and international partners, including Strathclyde University, EPCC at the University of Edinburgh, Sapienza University of Rome and Technical University of Denmark.
Collaborations and top research areas from the last five years
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Development of a Compact Hydro Energy Device for Agricultural and Horticultural Sectors
Campobasso, S. (Principal Investigator)
1/10/23 → 31/03/25
Project: Research
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Opensource machine learning metamodels for assessing wind turbine energy losses due to blade erosion and support turbine predictive maintenance
Campobasso, S. (Principal Investigator), Ortolani, A. (Researcher), Minisci, E. (Principal Investigator) & Castorrini, A. (Co-Investigator)
1/05/23 → 30/06/24
Project: Research
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Streamlined parallel I/O and fluid/structure interaction functionalities in Navier-Stokes ARCTIC and COSA codes for renewable energy and propulsion applications
Campobasso, S. (Principal Investigator)
Engineering and Physical Sciences Research Council
1/07/22 → 31/12/23
Project: Research
Research output
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Benchmarking aerodynamic codes for 2D aerofoils with leading edge erosion
Forsting, A. M., Dicholkar, A., Sørensen, N., Olsen, A., Bak, C., Theron, J., Aihara, A., Caboni, M., Ravishankara, A. K., Vimalakanthan, K., Bretos, D., Mendez, B., Campaña-Alonso, G., Jimenez, O. P., Grasso, F., Campobasso, M. & Maniaci, D., 1/05/2026, In: Journal of Physics: Conference Series. 3224, 4, 042037.Research output: Contribution to Journal/Magazine › Journal article › peer-review
Open AccessFile15 Downloads (Pure) -
Can vortex generators reduce power losses of utility-scale wind turbines due to blade leading edge erosion?
Collin, T., Castorrini, A., Shende, S., Forsting, A. M. & Campobasso, M. S., 1/05/2026, In: Journal of Physics: Conference Series. 3224, 4Research output: Contribution to Journal/Magazine › Journal article › peer-review
Open AccessFile4 Downloads (Pure) -
Comparative analysis of wind turbine erosion using reanalysis, satellite and ground-measured rain data
Shende, S., Castorrini, A., Hasager, C. B., Vinod, A., Dimitriadou, K., Adirosi, E., Pace, G., Silvestri, L. D., Sánchez, F., Rose, M. S. & Campobasso, M. S., 1/05/2026, In: Journal of Physics: Conference Series. 3224, 6, 062034.Research output: Contribution to Journal/Magazine › Journal article › peer-review
Open AccessFile5 Downloads (Pure) -
Development, performance and energy trade-off analyses of wind turbine precipitation-reactive control at offshore and onshore sites in Western Europe
Campobasso, M. S., Rose, M. S., Shende, S., Adirosi, E., Pace, G., De Silvestri, L., Dimitriadou, K., Vinod, A., Hassager, C. B., Sánchez, F. & Castorrini, A., 15/04/2026, In: Renewable Energy. 262, 125357.Research output: Contribution to Journal/Magazine › Journal article › peer-review
Open AccessFile11 Downloads (Pure) -
Approaches for droplet impingement computation: International Energy Agency (IEA) Wind Task 46, Work-package 3: Wind turbine operation with erosion
Castorrini, A. & Campobasso, S., 31/03/2025, International Energy Agency Wind Division.Research output: Contribution to specialist publication › Technical Report
Open AccessFile32 Downloads (Pure)
Activities
- 4 Oral presentation
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Assessment of Wind Turbine Precipitation-Reactive Control with Measured Synchronous Co-located Time-Series of Wind and Rain Data
Rose, M. (Active Contributor), Doraymoray Badalge, S. (Active Contributor), Shende, S. (Active Contributor), Castorrini, A. (Active Contributor), Adirosi, E. (Active Contributor), Scarchilli, C. (Active Contributor), Pace, G. (Active Contributor) & Campobasso, S. (Speaker)
24/06/2025Activity: Talk or presentation types › Oral presentation
File -
Comparative Analysis of Erosion Potential of Wind Turbine Blade at Northern and Southern Europe Sites
Adirosi, E. (Active Contributor), Rose, M. (Active Contributor), Shende, S. (Active Contributor), Castorrini, A. (Active Contributor), Sanchez Lopez, F. (Active Contributor), Scarchilli, C. (Active Contributor), Pace, G. (Active Contributor) & Campobasso, S. (Speaker)
24/06/2025Activity: Talk or presentation types › Oral presentation
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Challenges in Assessing the Aerodynamic Performance Degradation due to Severe Leading Edge Erosion by means of Erosion-Resolved Computational Fluid Dynamics
Campobasso, S. (Speaker), Ortolani, A. (Active Contributor) & Castorrini, A. (Active Contributor)
6/02/2024 → 8/02/2024Activity: Talk or presentation types › Oral presentation
File -
High-fidelity time- and nonlinear frequency-domain analysis of unsteady loads of floating offshore wind turbines in yawed wind
Campobasso, S. (Speaker), Ortolani, A. (Active Contributor), Papi, F. (Active Contributor), Drofelnik, J. (Active Contributor), Persico, G. (Active Contributor) & Bianchini, A. (Active Contributor)
23/03/2023 → 26/03/2023Activity: Talk or presentation types › Oral presentation
File
Press/Media
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Finding solutions to reduce erosion on wind turbines
22/01/25
1 Media contribution
Press/Media: Newspaper Article
Datasets
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META-DATA for IEA Wind Task 46. WP2: Atmospheric drivers of wind turbine blade leading edge erosion: Ancillary variables
Pryor, S. C. (Creator), Barthelmie, R. J. (Creator), Campobasso, S. (Creator), Delwik, E. (Creator), Hannisdottir, A. (Creator), Hasager, C. (Creator), Kral, S. T. (Creator), Reuder, J. (Creator), Rodgers, M. (Creator) & Veraart, M. (Creator), Zenodo, 14/03/2023
DOI: 10.5281/zenodo.7734765, https://zenodo.org/record/7734765
Dataset