CFD Simulations of Multi-Directional Irregular Wave Interaction With a Large Cylinder

Ocean waves are random by nature and can be regarded as a superposition of a finite number of regular waves travelling in different directions with different frequencies and phases. Cylinder-shaped objects are commonly present in most coastal structures. An irregular bottom topography has a signific...

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Published in:Volume 2: CFD and FSI
Main Authors: Wang, Weizhi, Kamath, Arun, Bihs, Hans
Format: Book Part
Language:English
Published: American Society of Mechanical Engineers (ASME) 2018
Subjects:
Online Access:http://hdl.handle.net/11250/2568634
https://doi.org/10.1115/OMAE2018-77511
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spelling ftntnutrondheimi:oai:ntnuopen.ntnu.no:11250/2568634 2023-05-15T14:24:10+02:00 CFD Simulations of Multi-Directional Irregular Wave Interaction With a Large Cylinder Wang, Weizhi Kamath, Arun Bihs, Hans 2018 http://hdl.handle.net/11250/2568634 https://doi.org/10.1115/OMAE2018-77511 eng eng American Society of Mechanical Engineers (ASME) ASME 2018 37th International Conference on Ocean, Offshore and Arctic Engineering - Volume 2: CFD and FSI Statens Vegvesen: 90121200 urn:isbn:978-0-7918-5121-0 http://hdl.handle.net/11250/2568634 https://doi.org/10.1115/OMAE2018-77511 cristin:1615420 Chapter 2018 ftntnutrondheimi https://doi.org/10.1115/OMAE2018-77511 2019-09-17T06:54:20Z Ocean waves are random by nature and can be regarded as a superposition of a finite number of regular waves travelling in different directions with different frequencies and phases. Cylinder-shaped objects are commonly present in most coastal structures. An irregular bottom topography has a significant influence on the wave behaviours and therefore the wave forces on the coastal structures. A numerical approach that is able to calculate the wave forces on a cylinder in a multi-directional irregular wave field over an irregular bottom is desired. As Computational Fluid Dynamics (CFD) is able to represent most of the wave behaviour with few assumptions, it is considered to be an attractive option to address these issues. The open-source CFD wave model REEF3D has shown good performances in simulating wave propagation over irregular bottoms and a good prediction of wave forces on a cylinder in a uni-directional wave field, yet the ability to calculate the wave force in a multi-directional irregular sea needs to be validated. Therefore, this paper attempts to simulate the multi-directional random sea interaction with a large cylinder using REEF3D and validate the results. A novel approach of multi-directional irregular wave generation method in a CFD-based numerical wave tank is introduced. Only even-bottom tanks are considered in this study, leaving the irregular bottom simulation for future studies. Furthermore, among many factors that influence the wave forces, this paper focuses particularly on the effect of the wave steepness. The effects of wave steepness in regular waves, uni-directional irregular waves and multi-directional irregular waves are investigated. Goda’s JONSWAP frequency spectrum and the frequency-independent Mitsuyasu directional spreading function are used to generate the multi-directional irregular waves. The wave forces due to the multi-directional irregular waves in the numerical tank are compared with experimental data. The performance of the CFD simulation is analysed and discussed. publishedVersion (c) 2018 by ASME Book Part Arctic NTNU Open Archive (Norwegian University of Science and Technology) Volume 2: CFD and FSI
institution Open Polar
collection NTNU Open Archive (Norwegian University of Science and Technology)
op_collection_id ftntnutrondheimi
language English
description Ocean waves are random by nature and can be regarded as a superposition of a finite number of regular waves travelling in different directions with different frequencies and phases. Cylinder-shaped objects are commonly present in most coastal structures. An irregular bottom topography has a significant influence on the wave behaviours and therefore the wave forces on the coastal structures. A numerical approach that is able to calculate the wave forces on a cylinder in a multi-directional irregular wave field over an irregular bottom is desired. As Computational Fluid Dynamics (CFD) is able to represent most of the wave behaviour with few assumptions, it is considered to be an attractive option to address these issues. The open-source CFD wave model REEF3D has shown good performances in simulating wave propagation over irregular bottoms and a good prediction of wave forces on a cylinder in a uni-directional wave field, yet the ability to calculate the wave force in a multi-directional irregular sea needs to be validated. Therefore, this paper attempts to simulate the multi-directional random sea interaction with a large cylinder using REEF3D and validate the results. A novel approach of multi-directional irregular wave generation method in a CFD-based numerical wave tank is introduced. Only even-bottom tanks are considered in this study, leaving the irregular bottom simulation for future studies. Furthermore, among many factors that influence the wave forces, this paper focuses particularly on the effect of the wave steepness. The effects of wave steepness in regular waves, uni-directional irregular waves and multi-directional irregular waves are investigated. Goda’s JONSWAP frequency spectrum and the frequency-independent Mitsuyasu directional spreading function are used to generate the multi-directional irregular waves. The wave forces due to the multi-directional irregular waves in the numerical tank are compared with experimental data. The performance of the CFD simulation is analysed and discussed. publishedVersion (c) 2018 by ASME
format Book Part
author Wang, Weizhi
Kamath, Arun
Bihs, Hans
spellingShingle Wang, Weizhi
Kamath, Arun
Bihs, Hans
CFD Simulations of Multi-Directional Irregular Wave Interaction With a Large Cylinder
author_facet Wang, Weizhi
Kamath, Arun
Bihs, Hans
author_sort Wang, Weizhi
title CFD Simulations of Multi-Directional Irregular Wave Interaction With a Large Cylinder
title_short CFD Simulations of Multi-Directional Irregular Wave Interaction With a Large Cylinder
title_full CFD Simulations of Multi-Directional Irregular Wave Interaction With a Large Cylinder
title_fullStr CFD Simulations of Multi-Directional Irregular Wave Interaction With a Large Cylinder
title_full_unstemmed CFD Simulations of Multi-Directional Irregular Wave Interaction With a Large Cylinder
title_sort cfd simulations of multi-directional irregular wave interaction with a large cylinder
publisher American Society of Mechanical Engineers (ASME)
publishDate 2018
url http://hdl.handle.net/11250/2568634
https://doi.org/10.1115/OMAE2018-77511
genre Arctic
genre_facet Arctic
op_relation ASME 2018 37th International Conference on Ocean, Offshore and Arctic Engineering - Volume 2: CFD and FSI
Statens Vegvesen: 90121200
urn:isbn:978-0-7918-5121-0
http://hdl.handle.net/11250/2568634
https://doi.org/10.1115/OMAE2018-77511
cristin:1615420
op_doi https://doi.org/10.1115/OMAE2018-77511
container_title Volume 2: CFD and FSI
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