2019 - Sainte Marie, Reunion

Island

3D Physical Model in cooperation with HR Wallingford Physical model testing of the Sainte Marie Port breakwater extension.

2019 - Berri Island, Arabian

Gulf, Saudi Arabia

2D/3D Physical Model in cooperation with CWP Engineering Physical model test of Berri Island revetment.

2020 - Berri Island, Arabian

Gulf, Saudi Arabia

2D Physical Model in cooperation with CWP Engineering Stability and overtopping test of 4-legs- armored rubble mound breakwater.

2020 - Mauritius Port Authority

- 3D Physical Model in

cooperation with CWP

Engineering

Stability test of the coastal structures at the Fort William platform extension.

2019 - EcoSmart Breakwater

Physical model testing of an innovative armour unit shape for rubble-mound breakwaters. “Eco-Smart Breakwater” Project, Regione Puglia, Grant # S6LU5I7.

2020 - Inno-DuneCost

Physical model test of an innovative and environmental-friendly technique for consolidation of sand coastal dunes. “Inno- DuneCost” Project, Regione Puglia, Grant # RM5UKM3.

2021 – Kalba, Sharjah, United

Arab Emirates - 2D/3D

Physical Models in

cooperation with CWP

Engineering

Performance evaluation of a submerged breakwater system as costal defence against overtopping.

2021 - MAREWIND - MAterials

solutions for cost Reduction

and Extended service life on

WIND off-shore facilities –

2D/3D Physical Models

Tests on materials durability and maintenance of offshore structures.

2023 - Sizable - 2D/3D

Physical Models in

cooperation with SiZable

Energy

Experimental tests on an innovative long- duration energy storage system based on hydroelectric pumping technology—Sizable Energy.

2020 - 2D Physical Model of a

rubble mound breakwater,

Egypt, in cooperation with HR

Wallingford

Physical model test of dolos-armored rubble mound breakwater stability, wave overtopping, and forces on breakwater crown walls.

2021 - HELP - for an Healthy sEa

with Less Plastic - 2D/3D

Physical Models

Physical model tests of a new offshore floating plastic collector.

2024 - Layyah, Sharjah, United

Arab Emirates - 3D Physical

Models in cooperation with

CWP Engineering

Stability and flooding test of a navigation channel.

2024 - 2D Physical Model of a

rubble mound breakwater

with CORE-LOC™ armour units

Construction and testing of a rubble mound breakwater with CORE-LOC™ armour units

2024 - FishRise - Remote,

Intelligent & Sustainable

aquaculturE system for Fish

Physical model tests on innovative offshore aquaculture cages, designed to move autonomously within the concession area and remotely controlled through advanced sensor technology.

2024 - 3D physical model tests

- Port of Arenella - Palermo

Physical model tests on stability and overtopping of a rubble mound breakwater

2025 - 3D Physical Model of

the port of Lampedusa

Study of residual wave agitation inside the Port of Lampedusa and wave-structure interactions. The 1:50 scale model allows for the analysis of the port’s operational conditions and the optimization of design solutions to ensure the safety and functionality of the port infrastructure.
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2019 - Sainte Marie, Reunion

Island

3D Physical Model in cooperation with HR Wallingford Physical model testing of the Sainte Marie Port breakwater extension.

2019 - Berri Island, Arabian

Gulf, Saudi Arabia

2D/3D Physical Model in cooperation with CWP Engineering Physical model test of Berri Island revetment.

2020 - Berri Island, Arabian

Gulf, Saudi Arabia

2D Physical Model in cooperation with CWP Engineering Stability and overtopping test of 4-legs- armored rubble mound breakwater.

2020 - Mauritius Port Authority

- 3D Physical Model in

cooperation with CWP

Engineering

Stability test of the coastal structures at the Fort William platform extension.

2019 - EcoSmart Breakwater

Physical model testing of an innovative armour unit shape for rubble-mound breakwaters. “Eco-Smart Breakwater” Project, Regione Puglia, Grant # S6LU5I7.

2020 - Inno-DuneCost

Physical model test of an innovative and environmental-friendly technique for consolidation of sand coastal dunes. “Inno- DuneCost” Project, Regione Puglia, Grant # RM5UKM3.

2021 – Kalba, Sharjah, United

Arab Emirates - 2D/3D

Physical Models in

cooperation with CWP

Engineering

Performance evaluation of a submerged breakwater system as costal defence against overtopping.

2021 - MAREWIND - MAterials

solutions for cost Reduction

and Extended service life on

WIND off-shore facilities –

2D/3D Physical Models

Tests on materials durability and maintenance of offshore structures.

2023 - Sizable - 2D/3D

Physical Models in

cooperation with SiZable

Energy

Experimental tests on an innovative long- duration energy storage system based on hydroelectric pumping technology—Sizable Energy.

2020 - 2D Physical Model of a

rubble mound breakwater,

Egypt, in cooperation with HR

Wallingford

Physical model test of dolos-armored rubble mound breakwater stability, wave overtopping, and forces on breakwater crown walls.

2021 - HELP - for an Healthy sEa

with Less Plastic - 2D/3D

Physical Models

Physical model tests of a new offshore floating plastic collector.

2024 - Layyah, Sharjah, United

Arab Emirates - 3D Physical

Models in cooperation with

CWP Engineering

Stability and flooding test of a navigation channel.

2024 - 2D Physical Model of a

rubble mound breakwater

with CORE-LOC™ armour units

Construction and testing of a rubble mound breakwater with CORE-LOC™ armour units

2024 - FishRise - Remote,

Intelligent & Sustainable

aquaculturE system for Fish

Physical model tests on innovative offshore aquaculture cages, designed to move autonomously within the concession area and remotely controlled through advanced sensor technology.

2024 - 3D physical model tests

- Port of Arenella - Palermo

Physical model tests on stability and overtopping of a rubble mound breakwater

2025 - 3D Physical Model of

the port of Lampedusa

Study of residual wave agitation inside the Port of Lampedusa and wave-structure interactions. The 1:50 scale model allows for the analysis of the port’s operational conditions and the optimization of design solutions to ensure the safety and functionality of the port infrastructure.
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