The dynamic behaviour of an ROV in wave affected zones
The dynamic behaviour of an ROV in wave affected zones
We present a method to directly predict the hydrodynamic response of a Remotely Operated Vehicle (ROV) as it transitions through the wave-affected splash zone during launch or recovery. ROVs are commonly used in offshore operations and for many different purposes. They are usually deployed from a purpose built Launch and Recovery System (LARS) located on the open deck of a surface ship. Current industry practice used for LARS design is to use a pre-defined dynamic amplification factor (DAF) together with high factors of safety. However, this does not properly account for the influence of different sea states and operational profiles. We therefore propose an improved method to directly predict the hydrodynamic response of an ROV as it transitions through the wave-affected splash zone.We apply the approach to a trencher ROV and validate using physical experiments completed in a wave tank. We demonstrate the need to for an accurate definition of the added mass and damping characteristics of the ROV. The method is incorporated into OrcaFlex for direct use within the design and analysis of a LARS system.
The American Society of Mechanical Engineers
Bashir, Musa B.
03146b14-6871-4656-8318-d25655175374
Menon, Mahesh
f25573c8-77e4-47bb-9f10-7662697c90cc
Benson, Simon D.
fcabbce1-415a-4c5a-95ac-e280739d1c4e
Eastwood, Rob
392803f8-62a8-4378-be7f-c03ec5077e58
Murphy, Alan J.
8e021dad-0c60-446b-a14e-cddd09d44626
Cunny, Daniel
1581e80b-c696-4ea8-983c-dfbc7d3dc95b
Van Zwanenberg, Michael
f64551d5-ca41-46e3-9140-b59c34b213fd
18 October 2016
Bashir, Musa B.
03146b14-6871-4656-8318-d25655175374
Menon, Mahesh
f25573c8-77e4-47bb-9f10-7662697c90cc
Benson, Simon D.
fcabbce1-415a-4c5a-95ac-e280739d1c4e
Eastwood, Rob
392803f8-62a8-4378-be7f-c03ec5077e58
Murphy, Alan J.
8e021dad-0c60-446b-a14e-cddd09d44626
Cunny, Daniel
1581e80b-c696-4ea8-983c-dfbc7d3dc95b
Van Zwanenberg, Michael
f64551d5-ca41-46e3-9140-b59c34b213fd
Bashir, Musa B., Menon, Mahesh, Benson, Simon D., Eastwood, Rob, Murphy, Alan J., Cunny, Daniel and Van Zwanenberg, Michael
(2016)
The dynamic behaviour of an ROV in wave affected zones.
In Proceedings of the ASME 2016 35th International Conference on Ocean, Offshore and Arctic Engineering: Ocean Engineering.
vol. 7,
The American Society of Mechanical Engineers.
8 pp
.
(doi:10.1115/OMAE2016-54849).
Record type:
Conference or Workshop Item
(Paper)
Abstract
We present a method to directly predict the hydrodynamic response of a Remotely Operated Vehicle (ROV) as it transitions through the wave-affected splash zone during launch or recovery. ROVs are commonly used in offshore operations and for many different purposes. They are usually deployed from a purpose built Launch and Recovery System (LARS) located on the open deck of a surface ship. Current industry practice used for LARS design is to use a pre-defined dynamic amplification factor (DAF) together with high factors of safety. However, this does not properly account for the influence of different sea states and operational profiles. We therefore propose an improved method to directly predict the hydrodynamic response of an ROV as it transitions through the wave-affected splash zone.We apply the approach to a trencher ROV and validate using physical experiments completed in a wave tank. We demonstrate the need to for an accurate definition of the added mass and damping characteristics of the ROV. The method is incorporated into OrcaFlex for direct use within the design and analysis of a LARS system.
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Published date: 18 October 2016
Venue - Dates:
ASME 2016 35th International Conference on Ocean, Offshore and Arctic Engineering, OMAE 2016, , Busan, Korea, Republic of, 2016-06-19 - 2016-06-24
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Local EPrints ID: 484024
URI: http://eprints.soton.ac.uk/id/eprint/484024
PURE UUID: e2098ce0-de66-414c-be21-c5c338bc3892
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Date deposited: 09 Nov 2023 17:32
Last modified: 10 May 2024 17:03
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Contributors
Author:
Musa B. Bashir
Author:
Mahesh Menon
Author:
Simon D. Benson
Author:
Rob Eastwood
Author:
Alan J. Murphy
Author:
Daniel Cunny
Author:
Michael Van Zwanenberg
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