4.7 Article

A numerical tool for modelling oscillating wave surge converter with nonlinear mechanical constraints

期刊

RENEWABLE ENERGY
卷 146, 期 -, 页码 2024-2043

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.renene.2019.08.034

关键词

Numerical modelling; Smoothed particle hydrodynamics (SPH); Oscillating wave surge converter (OWSC); Mechanical constraints; Wave energy; Wave-structure interaction

资金

  1. FCT [PD/BD/705970/2014]
  2. Ministry of Economy and Competitiveness of the Government of Spain [WELCOME ENE2016-75074-C2-1-R]

向作者/读者索取更多资源

Mechanical constraints have a non-negligible influence in the motion of oscillating wave surge converter (OWSC) devices. The key novelty of this paper is a numerical simulation tool for OWSCs that does not neglect or significantly compromise mechanical constraints such as hydraulic power take-off (PTO) system, revolute joints and frictional contacts among components. The paper is aimed at presenting the key components of the numerical simulation tool and at validating it with laboratory data featuring an OWSC with mechanical constraints under regular and irregular waves. It is based on the implementation of the multibody solver of Project Chrono under the Smoothed Particle Hydrodynamics (SPH) model of DualSPHysics, where the SPH solver resolves the interaction between wave and flap and the multibody solver resolves the interaction between flap and mechanical constraints. Comparison between numerical results and experimental data show that the numerical simulation tool properly predicts the dynamics of the OWSC. Furthermore, in what concerns hydrodynamics of the near-flap flow, the computed and measured free-surface elevations and phase-averaged flow field show reasonable agreement. Once properly validated, the numerical simulation tool is then applied to study the influence of several mechanical constraints, PTO damping characteristics and flap inertia on the hydrodynamic of the OWSC. The viability of OWSC design solutions based on the developed numerical simulation tool is emphasised, in view of its performance in the test cases to which it was subjected. (C) 2019 Elsevier Ltd. All rights reserved.

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