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)

Affiliation
External organisation
DOI related publication
https://doi.org/10.1115/OMAE2019-96745 Final published version
More Info
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Publication Year
2019
Language
English
Affiliation
External organisation
Volume number
7a
Article number
V07AT06A029
Publisher
ASME
ISBN (print)
978-0-7918-5884-4
ISBN (electronic)
9780791858844
Downloads counter
97

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.