- ORCID iD
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0000-0002-1421-542X
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Stress testing to reduce oyster spat mortality during deployment of inoculated substrates used in marine infrastructure and active reef restoration
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- PhD Thesis
- open access
Numerical modelling of wave-flexible vegetation interactions using the smoothed particle hydrodynamics method
(2024) -
- Journal Article
- A1
- open access
Exploring wave–vegetation interaction at stem scale : analysis of the coupled flow–structure interactions using the SPH-based DualSPHysics code and the FEA module of chrono
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- Journal Article
- A1
- open access
Numerical modelling of wave–vegetation interaction : embracing a cross-disciplinary approach for bridging ecology and engineering for nature-inclusive coastal defence systems
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- Conference Paper
- C1
- open access
Exploring wave-vegetation interaction at blade scale : a comprehensive analysis of a flexible cylinder through experimental data and a direct numerical simulation
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Numerical investigation of wave-induced flexible vegetation dynamics in 3D using a coupling between DualSPHysics and the FEA module of Project Chrono
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- Conference Paper
- C1
- open access
Numerical simulation of wave-induced vegetation dynamics using a partitioned coupling between the sph method and an fea structural solver
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- Conference Paper
- C3
- open access
Numerical simulation of flexible wave energy converters : a coupling beteen DualSPHysics and Project Chrono
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- Journal Article
- A1
- open access
Coupling an SPH-based solver with an FEA structural solver to simulate free surface flows interacting with flexible structures
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On the development of a novel approach for simulating elastic beams in dualsphysics with the use of the project chrono library