Regular Wave Seakeeping Analysis of a Planing Hull by Smoothed Particle Hydrodynamics: A Comprehensive Validation

Author:

Capasso Salvatore1ORCID,Tagliafierro Bonaventura2ORCID,Mancini Simone34ORCID,Martínez-Estévez Iván5ORCID,Altomare Corrado2ORCID,Domínguez José M.5ORCID,Viccione Giacomo1ORCID

Affiliation:

1. Environmental and Maritime Hydraulics Laboratory (LIDAM), University of Salerno, Fisciano, 84084 Campania, Italy

2. Laboratori d’Enginyeria Marítima, Universitat Politècnica de Catalunya–BarcelonaTech (UPC), 08034 Barcelona, Spain

3. Dipartimento di Ingegneria Industriale, Università degli Studi di Napoli “Federico II”, 80125 Napoli, Italy

4. Hydro and Aerodynamics Department, FORCE Technology, Kongens Lyngby, 2800 Copenhagen, Denmark

5. Environmental Physics Laboratory (EPhysLab), Centro de Investigación Mariña (CIM-UVIGO), Universidade de Vigo, 32004 Ourense, Spain

Abstract

In this work, the dynamics of a planing hull in regular head waves was investigated using the Smoothed Particle Hydrodynamics (SPH) meshfree method. The simulation of the interaction of such vessels with wave trains features several challenging characteristics, from the complex physical interaction, due to large dynamic responses, to the likewise heavy numerical workload. A novel numerical wave flume implemented within the SPH-based code DualSPHysics fulfills both demands, guaranteeing comparable accuracy with an established proprietary Computational Fluid Dynamics (CFD) solver without sharpening the computational load. The numerical wave flume uses ad hoc open-boundary conditions to reproduce the flow characteristics encountered by the hull during its motion, combining the current and waves while adjusting their properties with respect to the vessel’s experimental towing speed. It follows a relatively small three-dimensional domain, where the potentiality of the SPH method in modeling free-surface flows interacting with moving structures is unleashed. The results in different wave conditions show the feasibility of this novel approach, considering the overall good agreement with the experiments; hence, an interesting alternative procedure to simulate the seakeeping test in several marine conditions with bearable effort and satisfying accuracy is established.

Publisher

MDPI AG

Subject

Ocean Engineering,Water Science and Technology,Civil and Structural Engineering

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