Interaction of fixed cylinder with waves through weakly coupled FNPT and Lagrangian Navier-stokes

Conference Paper (2019)
Author(s)

S. Agarwal (Indian Institute of Technology Madras)

V. Sriram (Indian Institute of Technology Madras)

K. Murali (Indian Institute of Technology Madras)

DOI related publication
https://doi.org/10.1115/OMAE2019-96745 Final published version
More Info
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Publication Year
2019
Language
English
Volume number
7a
Article number
V07AT06A029
Publisher
ASME
ISBN (print)
978-0-7918-5884-4
ISBN (electronic)
9780791858844
Downloads counter
74

Abstract

This paper presents a 2D/3D hybrid numerical model for studying the interaction of non-breaking waves with cylindrical structure. The work combines the strengths of mesh-based and particle-based methods, where the wave propagation is solved using 2D mesh-based potential theory model and the interaction with the structure is solved using 3D particle-based Navier-Stokes model. The paper presents the formulation of the two models and the weak-coupling methodology, along with recent improvements in the 3D MLPG_R (Mesh-less Petrov-Galerkin based on Rankine source solution) particle based method. The numerical results from interaction of fixed cylinder with solitary and focussed waves are compared with experimental data. The work demonstrates a significant reduction in simulation time for wave-structure interaction problems achieved using this hybrid approach without compromising on accuracy.