CFD analysis of flow induced vibration of cylinders and offshore structures

Flow induced vibration is one of the major contributors to reduction in fatigue life of offshore structures. The two phenomena associated with fluid-structure interaction are: The vortex Induced Vibration, observed in structures with high aspect ratio like the risers and mooring systems; the Vortex...

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Main Author: Isaac Mark Joseph Manasseh
Other Authors: Nguyen Vinh Tan
Format: Theses and Dissertations
Language:English
Published: 2017
Subjects:
Online Access:http://hdl.handle.net/10356/69904
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-699042023-03-11T17:40:42Z CFD analysis of flow induced vibration of cylinders and offshore structures Isaac Mark Joseph Manasseh Nguyen Vinh Tan School of Mechanical and Aerospace Engineering DRNTU::Engineering::Mechanical engineering Flow induced vibration is one of the major contributors to reduction in fatigue life of offshore structures. The two phenomena associated with fluid-structure interaction are: The vortex Induced Vibration, observed in structures with high aspect ratio like the risers and mooring systems; the Vortex Induced Motion of offshore platforms with low aspect ratio. A high fidelity fluid dynamics simulation is required to study the above phenomena and the corresponding data is recommended for the manufacture of structures which are not susceptible to Flow Induced Vibrations. kOmegaSST and kEpsilon employing RANS have proven to be reliable turbulence models to calculate hydrodynamic forces. The objective of the thesis is firstly, to investigate the effects of flow around cylinders at various Reynolds numbers and secondly, to propose a universal methodology to capture the VIM phenomenon. In this thesis the OpenFOAM software's groundwork is investigated concerning its capability to perform transient simulations. The simulations for cylinders were run at various flow regimes and the results were found to be satisfactory. The force coefficient- Reynolds number relationship have good conformity with other experimental results. The snappyHexMesh utility has proven to generate converged results for complex grids with low values of dimensionless wall distance y+. The main recommendation from the present work is to employ OpenFOAM's mesh utility for meshing complex offshore models and transient simulation capabilities for predicting hydrodynamic forces Master of Science (Aerospace Engineering) 2017-03-31T01:51:49Z 2017-03-31T01:51:49Z 2017 Thesis http://hdl.handle.net/10356/69904 en 137 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Mechanical engineering
spellingShingle DRNTU::Engineering::Mechanical engineering
Isaac Mark Joseph Manasseh
CFD analysis of flow induced vibration of cylinders and offshore structures
description Flow induced vibration is one of the major contributors to reduction in fatigue life of offshore structures. The two phenomena associated with fluid-structure interaction are: The vortex Induced Vibration, observed in structures with high aspect ratio like the risers and mooring systems; the Vortex Induced Motion of offshore platforms with low aspect ratio. A high fidelity fluid dynamics simulation is required to study the above phenomena and the corresponding data is recommended for the manufacture of structures which are not susceptible to Flow Induced Vibrations. kOmegaSST and kEpsilon employing RANS have proven to be reliable turbulence models to calculate hydrodynamic forces. The objective of the thesis is firstly, to investigate the effects of flow around cylinders at various Reynolds numbers and secondly, to propose a universal methodology to capture the VIM phenomenon. In this thesis the OpenFOAM software's groundwork is investigated concerning its capability to perform transient simulations. The simulations for cylinders were run at various flow regimes and the results were found to be satisfactory. The force coefficient- Reynolds number relationship have good conformity with other experimental results. The snappyHexMesh utility has proven to generate converged results for complex grids with low values of dimensionless wall distance y+. The main recommendation from the present work is to employ OpenFOAM's mesh utility for meshing complex offshore models and transient simulation capabilities for predicting hydrodynamic forces
author2 Nguyen Vinh Tan
author_facet Nguyen Vinh Tan
Isaac Mark Joseph Manasseh
format Theses and Dissertations
author Isaac Mark Joseph Manasseh
author_sort Isaac Mark Joseph Manasseh
title CFD analysis of flow induced vibration of cylinders and offshore structures
title_short CFD analysis of flow induced vibration of cylinders and offshore structures
title_full CFD analysis of flow induced vibration of cylinders and offshore structures
title_fullStr CFD analysis of flow induced vibration of cylinders and offshore structures
title_full_unstemmed CFD analysis of flow induced vibration of cylinders and offshore structures
title_sort cfd analysis of flow induced vibration of cylinders and offshore structures
publishDate 2017
url http://hdl.handle.net/10356/69904
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