Andrea Amicarelli
École centrale de Lyon
29 Papers
98 Citations
Andrea Amicarelli is an academic researcher from École centrale de Lyon. The author has contributed to research in topics: Smoothed-particle hydrodynamics & Turbulence. The author has an hindex of 10, co-authored 26 publications. Previous affiliations of Andrea Amicarelli include National Institute for Occupational Safety and Health & Sapienza University of Rome.
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Papers
A Smoothed Particle Hydrodynamics model for 3D solid body transport in free surface flows
Andrea Amicarelli,Raffaele Albano,Domenica Mirauda,Giordano Agate,Aurelia Sole,Roberto Guandalini +5 more
TL;DR: In this article, a 3D Smoothed Particle Hydrodynamics (SPH) numerical scheme was developed to reproduce the transport of rigid bodies in free surface flows (e.g. floods, surface waves).
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SPHERA v.9.0.0: A Computational Fluid Dynamics research code, based on the Smoothed Particle Hydrodynamics mesh-less method
Andrea Amicarelli,Sauro Manenti,Raffaele Albano,Giordano Agate,Marco Paggi,Laura Longoni,Domenica Mirauda,Latifa Ziane,Giacomo Viccione,Sara Todeschini,Aurelia Sole,Lara Martina Baldini,Davide Brambilla,Monica Papini,Mohamed Cherif Khellaf,Bonaventura Tagliafierro,Luca Sarno,Guido Pirovano +17 more
TL;DR: SPHERA v.9.0 (RSE SpA) is a FOSS CFD-SPH research code validated on the following application fields: floods with transport of solid bodies and bed-load transport; fast landslides and their interactions with water reservoirs; sediment removal from water bodies; fuel sloshing tanks; hydrodynamic lubrication for energy efficiency actions in the industrial sector.
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SPH Modeling of Water-Related Natural Hazards
TL;DR: The paper aims to provide insight into the SPH modeling of some relevant physical aspects involved in water-related natural hazards (e.g., sediment erosion and non-Newtonian rheology) and provides an overview of some widespread SPH free open source software (FOSS) codes applied to multiphase problems of theoretical and practical interest in the field of hydraulic engineering.
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SPH truncation error in estimating a 3D function
TL;DR: An approximated 3D formulation of eT is derived for Smoothed Particle Hydrodynamics modelling in reproducing a generic function and underlined the difference between non-consistent simulations and estimations using Shepard’s correction.
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WCSPH with Limiting Viscosity for Modeling Landslide Hazard at the Slopes of Artificial Reservoir
TL;DR: In this article, a limiting viscosity parameter was implemented in the previous formulation of the mixture model to limit the growth of the apparent viscoity, thus saving computational time while preserving the solution accuracy.
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