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CORDIS

Sloshing Wing Dynamics

Resultado final

Public Website and Social Media Groups

The SLOWD public website and the project’s social media groups will be established, providing information about the project, its objectives, challenges, and expected results. Regular updates with the project’s progress and achievements will be made, keeping constantly updated the “SLOWD Community”.

Initial Communication Pack

The initial communication pack will include the project logo, poster, leaflet, presentation and deliverable templates.

Communication Pack for Project Legacy

Preparation of dissemination material (final leaflet, poster etc.) which will be used by all partners in events performed after the end of the project.

Plan for the Dissemination, Communication & Exploitation of the project results

Report on the planned and performed dissemination and exploitation activities during the first year of the project. Based on the preliminary Dissemination and Exploitation plan included in the proposal, this deliverable will summarize the consortium’s strategy and future actions to disseminate, exploit and protect the foreground expected to be generated within the project.

Final Plan for the Dissemination, Communication & Exploitation of the project results

Report on the performed and foreseen (after the end of the project) dissemination and exploitation activities. In particular, this deliverable will summarize the consortium’s strategy and concrete actions to disseminate, exploit and protect the foreground generated by the project. This will also include details of the specific applications to wing tank design both with passive and closed-loop control.

Publicaciones

Statistical analysis of sloshing-induced dissipative energy across a range of Froude numbers

Autores: L Constantin; J J De Courcy; B Titurus; T C S Rendall1; J E Cooper
Publicado en: IOP Conference Series: Materials Science and Engineering, 2022
Editor: IOP Publishing
DOI: 10.1088/1757-899x/1226/1/012040

Gust Loads Alleviation Using Sloshing Fuel

Autores: Joe J. De Courcy; Lucian Constantin; Branislav Titurus; T. Rendall; Jonathan E. Cooper
Publicado en: AEROSPACE REASEARCH CENTRAL, 2021
Editor: American Institute of Aeronautics and Astronautics
DOI: 10.2514/6.2021-1152

Further improvements of the δ-LES-SPH model

Autores: M.Antuono; D.D. Meringolo; S. Marrone; A. Di Mascio; A. Colagrossi
Publicado en: Proceedings of the 2020 SPHERIC Harbin International Workshop, Edición 2020 SPHERIC Harbin International Workshop, 2020
Editor: Harbin Engineering University
DOI: 10.5281/zenodo.4494557

Headway in large-eddy-simulation within the SPH models

Autores: M. Antuono; A. Di Mascio; S. Marrone; D. D. Meringolo; A. Colagrossi
Publicado en: 2021
Editor: ZENODO
DOI: 10.5281/zenodo.4494372

Sloshing ROMs for Fluid-Structure Interactions in Aerospace Applications

Autores: Franco Mastroddi, Francesco Saltari, Alessandro Traini, Alberto Barile, Francesco Gambioli
Publicado en: AIAA Scitech 2020 Forum, Edición AIAA 2020-1451. AIAA Scitech 2020 Forum, 2020, ISBN 978-1-62410-595-1
Editor: American Institute of Aeronautics and Astronautics
DOI: 10.2514/6.2020-1451

Study of geometrical effects on slosh induced damping

Autores: Marco Pizzoli; Francesco Saltari; Giuliano Coppotelli; Franco Mastroddi
Publicado en: Study of geometrical effects on slosh induced damping, 2023
Editor: ZENODO
DOI: 10.2514/6.2023-0187

A SPH simulation of the sloshing phenomenon inside fuel tanks of the aircraft wings.

Autores: J. Calderon-Sanchez; L.M. Gonzalez; S. Marrone; A. Colagrossi; F. Gambioli
Publicado en: Proceedings of the 14th SPHERIC International Workshop, 2019
Editor: University of Exeter
DOI: 10.5281/zenodo.4280763

Artificial compressibility for smoothed particle hydrodynamics using pressure smoothing

Autores: Joe De Courcy; Thomas C S Rendall; Brano Titurus; Lucian Constantin
Publicado en: 2023
Editor: ZENODO
DOI: 10.5281/zenodo.8300612

Neural-network-based reduced-order model for vertical sloshing for FSI simulations

Autores: Pizzoli, M.; Martinez-Carrascal, J.; Saltari, F; Gonzalez-Guti ´ errez, L.M; Mastroddi, F
Publicado en: Pizzoli, M.; Martinez-Carrascal, J.; Saltari, F; Gonzalez-Guti ´ errez, L.M; Mastroddi, F, 2023, Página(s) -
Editor: -
DOI: 10.5281/zenodo.8358435

Sloshing reduced-order model trained withSmoothed Particle Hydrodynamics simulations

Autores: Jon Martinez-Carrascal; Marco Pizzoli; Francesco Saltari; Franco Mastroddi; Leo Miguel Gonz´alez-Guti´errez
Publicado en: 2023, Página(s) -
Editor: -
DOI: 10.5281/zenodo.8358616

SLOSHING EFFECTS ON FREE-BODY COMMERCIAL AIRCRAFT AEROELASTIC LOADS

Autores: M. Pizzoli; F. Saltari; L. Pustina; G. Mariani; G. Coppotelli; M.T. Migliorino; F. Gambioli; F. Mastroddi
Publicado en: 2023, Página(s) -
Editor: -
DOI: 10.5281/zenodo.8358556

Design and GVT of a dynamically scaled wing structure for fuel sloshing investigations

Autores: Lucian Constantin; Joe J. De Courcy; Branislav Titurus; T. Rendall; Jonathan E. Cooper
Publicado en: AEROSPACE RESEARCH CENTRAL, 2022
Editor: American Institute of Aeronautics and Astronautics
DOI: 10.2514/6.2022-2133

OMA analysis for the identification of the damping properties of a sloshing fluid

Autores: Giuliano Coppotelli; Gawra Franceschini; Francesco Saltari
Publicado en: 2023, Página(s) -
Editor: -
DOI: 10.2514/6.2022-1184

Prediction of energy dissipation in violent sloshing flows simulated by Smoothed Particle Hydrodynamics

Autores: S. Marrone; A. Colagrossi; L. Gonzalez-Gutierrez; J. Calderon-Sanchez; J. Martinez-Carrascal
Publicado en: 2023
Editor: ZENODO
DOI: 10.5281/zenodo.8314226

δ-SPH model for multi-phase flow: how to correctly select the sound speeds of the different phases

Autores: A. Colagrossi; S. Marrone; I. Hammani; G. Oger; D. Le Touzé
Publicado en: Proceedings of the 2020 SPHERIC Harbin International Workshop, Edición 2020 SPHERIC Harbin International Workshop, 2020
Editor: Harbin Engineering University
DOI: 10.5281/zenodo.4494604

Experimental Effect of Liquid Sloshing on the Dynamic Behaviour of Flared Folding Wingtips

Autores: Fintan Healy; Joe De Courcy; Huaiyuan Gu; Djamel Rezgui; Jonathan Cooper
Publicado en: 2023
Editor: ZENODO
DOI: 10.5281/zenodo.8300623

SPH modelling of dissipative sloshing flows under violent vertical harmonic excitation

Autores: S. Marrone; F. Saltari; J. Michel; F. Mastroddi
Publicado en: Journal of Fluids and Structures, Edición 119, 2023, Página(s) 103877, ISSN 0889-9746
Editor: Academic Press
DOI: 10.1016/j.jfluidstructs.2023.103877

Neural-network-based reduced order modeling for nonlinear vertical sloshing with experimental validation

Autores: Marco Pizzoli; Francesco Saltari; Giuliano Coppotelli; Franco Mastroddi
Publicado en: Research Square, 2022, ISSN 2693-5015
Editor: Research Square
DOI: 10.21203/rs.3.rs-1555237/v1

The δ -ALE-SPH model: An arbitrary Lagrangian-Eulerian framework for the δ -SPH model with particle shifting technique

Autores: M. Antuono, P.N. Sun, S. Marrone, A. Colagrossi
Publicado en: Computers & Fluids, Edición 216, 2021, Página(s) 104806, ISSN 0045-7930
Editor: Pergamon Press Ltd.
DOI: 10.1016/j.compfluid.2020.104806

Sloshing induced damping across Froude numbers in a harmonically vertically excited system

Autores: L. Constantin; J.J. De Courcy; B. Titurus; T.C.S. Rendall; J.E. Cooper
Publicado en: Journal of Sound and Vibration, Edición 510, 2021, Página(s) 116302, ISSN 1095-8568
Editor: ELSEVIER BV
DOI: 10.1016/j.jsv.2021.116302

Nonlinear reduced-order model for vertical sloshing by employing neural networks

Autores: Marco Pizzoli; Francesco Saltari; Franco Mastroddi; Jon Martinez-Carrascal; Leo M. González-Gutiérrez
Publicado en: Nonlinear Dynamics, Edición 111, 2021, ISSN 1573-269X
Editor: SPINGER NATURE B.V.
DOI: 10.1007/s11071-021-06668-w

Experimental Validation of Neural-Network-Based Nonlinear Reduced-Order Model for Vertical Sloshing

Autores: Marco Pizzoli; Giuliano Coppotell; Francesco Saltari; Franco Mastroddi
Publicado en: Journal of Fluids and Structures, 2022, ISSN 1095-8622
Editor: ELSEVIER B.V.
DOI: 10.2514/6.2022-1186

Smoothed particle hydrodynamics method from a large eddy simulation perspective. Generalization to a quasi-Lagrangian model

Autores: M. Antuono, S. Marrone, A. Di Mascio, A. Colagrossi
Publicado en: Physics of Fluids, Edición 33/1, 2021, Página(s) 015102, ISSN 1070-6631
Editor: American Institute of Physics
DOI: 10.1063/5.0034568

Smoothed particle hydrodynamics method from a large eddy simulation perspective

Autores: Andrea Di Mascio; Matteo Antuono; Andrea Colagrossi; Salvatore Marrone
Publicado en: Physics of Fluids, Edición 29, 2017, Página(s) 035102, ISSN 1089-7666
Editor: AIP Publishing
DOI: 10.1063/1.497827

Experimental study of the liquid damping effects on a SDOF vertical sloshing tank

Autores: J. Martinez-Carrascal, L.M. González-Gutiérrez
Publicado en: Journal of Fluids and Structures, Edición 100, 2021, Página(s) 103172, ISSN 0889-9746
Editor: Academic Press
DOI: 10.1016/j.jfluidstructs.2020.103172

Investigation of Sloshing Effects on Flexible Aircraft Stability and Response

Autores: Marco Pizzoli
Publicado en: Aerotecnica Missili & Spazio, Edición 99/4, 2020, Página(s) 297-308, ISSN 0365-7442
Editor: Springer
DOI: 10.1007/s42496-020-00064-0

A higher-order accurate surface tension modelling volume-of-fluid scheme for 2D curvilinear meshes

Autores: Niran A. Ilangakoon; Arnaud G. Malan; Bevan W.S. Jones
Publicado en: Journal of Computational Physics, Edición 420, 2020, Página(s) 109717, ISSN 1090-2716
Editor: Elsevier B.V.
DOI: 10.1016/j.jcp.2020.109717

A linearized reduced-order model approach for sloshing to be used for aerospace design

Autores: Francesco Saltari; Alessandro Traini; Francesco Gambioli; Franco Mastroddi
Publicado en: Aerospace Science and Technology, Edición Volume 108, January 2021, 106369, 2021, ISSN 1270-9638
Editor: Elsevier BV
DOI: 10.1016/j.ast.2020.106369

Experimental Effect of Liquid Sloshing on the Dynamic Behaviour of Flared Folding Wingtips

Autores: Fintan Healy; Joe De Courcy; Huaiyuan Gu; Djamel Rezgui; Jonathan Cooper
Publicado en: Applied Sciences, 2022, ISSN 2076-3417
Editor: ZENODO
DOI: 10.3390/app122311909

Detailed study on the extension of the δ -SPH model to multi-phase flow

Autores: I. Hammani, S. Marrone, A. Colagrossi, G. Oger, D. Le Touzé
Publicado en: Computer Methods in Applied Mechanics and Engineering, Edición 368, 2020, Página(s) 113189, ISSN 0045-7825
Editor: Elsevier BV
DOI: 10.1016/j.cma.2020.113189

A high-performance open-source solution for multiphase fluid-structure interaction

Autores: Wendi Liu; Stephen M. Longshaw; Alex Skillen; David R. Emerson
Publicado en: ISOP, Edición 32, 2023, ISSN 1053-5381
Editor: International Society of Offshore and Polar Engineers
DOI: 10.17736/ijope.2022.jc844

Effect of Fuel Sloshing on the Damping of a Scaled Wing Model—Experimental Testing and Numerical Simulation

Autores: Lucian Constantin; Joe J. De Courcy; Branislav Titurus 1; Thomas C. S. Rendall; Jonathan E. Cooper; Francesco Gambioli
Publicado en: Applied Sciences, 2022, ISSN 2076-3417
Editor: MDPI
DOI: 10.3390/app12157860

On the Efficacy of Turbulence Modelling for Sloshing

Autores: Omar Ahmed Mahfoze; Wendi Liu; Stephen M. Longshaw; Alex Skillen; David R. Emerson
Publicado en: Applied sciences, 2022, ISSN 2076-3417
Editor: MDPI
DOI: 10.3390/app12178851

SPH method for long-time simulations of sloshing flows in LNG tanks

Autores: C. Pillotona; A. Bardazzi; A. Colagrossi; S. Marrone
Publicado en: European Journal of Mechanics - B/Fluids, Edición 93, 2022, Página(s) 69-52, ISSN 1873-7390
Editor: ELSEVIER B.V.
DOI: 10.1016/j.euromechflu.2022.01.002

Sloshing induced damping in vertically vibrating systems

Autores: J J De Courcy, L Constantin, B Titurus, T C S Rendall, J E Cooper
Publicado en: IOP Conference Series: Materials Science and Engineering, Edición 1024/1, 2021, Página(s) 012084, ISSN 1757-8981
Editor: IOP Publishing
DOI: 10.1088/1757-899x/1024/1/012084

Experimental Investigation on the damping mechanism in sloshing structures

Autores: G. Coppotelli; G. Franceschini†; F. Mastroddi; F. Saltari
Publicado en: AEROSPACE RESEARCH CENTRAL, 2021
Editor: AAIA
DOI: 10.2514/6.2021-1388

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