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An AI-Based Detection System for Mooring Line Failure
Day 4 Thu, August 19, 2021, 2021Abstract Safe and productive offshore operations are of utmost importance, with monitoring the integrity of mooring lines on floating offshore platforms being one of the key factors. The conventional method uses sensors installed on mooring components, which may fail over time and can be costly to replace.
Djoni Eka Sidarta +5 more
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FPSO Mooring Line Failure Detection Based on Predicted Motion
Volume 1: Offshore Technology, 2021Abstract A failure in the mooring line of a platform, if not detected quickly, can cause a riser system failure, extended production downtime, or even environmental damages. Therefore, integrity management and timely detection of mooring failure for floating platforms are critical.
Amir Muhammed Saad +8 more
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Dynamic Behavior Analysis of an Engineering Ship With Mooring Line Failure
Marine Technology Society Journal, 2022Abstract In the present study, a series of numerical simulations were conducted to analyze the dynamic behavior of an engineering ship with mooring line failure. For this purpose, a fully coupled dynamic analysis program was used to develop a nonlinear numerical model of the hull-mooring system.
Haitao Wu, Zhiyang Zhang, Weixing Liu
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Mooring Line Failure Detection in the Absence of Load Monitoring
Volume 1: Offshore Technology, 2022Abstract Mooring Integrity Management (MIM) is a key operational aspect for FPSO operators, mooring system designers and Recognized Classification Societies (RCS). MIM programs should include the capability to detect a mooring line failure.
M. Naciri, M. Viola, Z. Wang, R. Yam
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Mooring Line Failure Detection Using Machine Learning
Offshore Technology Conference, 2019Offshore floating vessel mooring failure and subsequent loss of station can have catastrophic consequences for the vessel and the associated subsea infrastructure. Therefore, integrity management and timely detection of mooring failure is critical.
Vivek Jaiswal, Alex Ruskin
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Hydrodynamic Behaviors of Aquaculture Net Cages After the Successive Mooring Lines Failure
Volume 5: Ocean Space Utilization, 2021Abstract This paper aims to study the successive mooring line failure (also known as the domino effect) and the collision between floating collars for aquaculture net cages subjected to currents. The numerical model of this study is developed based on the Morison equation and the lumped-mass scheme in the time domain.
Hung-Jie Tang, Ray-Yeng Yang
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