Torque in Mooring Chain. Part 1: Background and Theory

Author:

Hobbs R. E1,L Ridge I. M2

Affiliation:

1. Department of Civil Engineering, Imperial College London, London, UK

2. School of Construction Management and Engineering, The University of Reading, Reading, UK

Abstract

Chain in both its forms - common (or stud-less) and stud-link - has many engineering applications. It is widely used as a component in the moorings of offshore floating systems, where its ruggedness and corrosion resistance make it an attractive choice. Chain exhibits some interesting behaviour in that when straight and subject to an axial load it does not twist or generate any torque, but if twisted or loaded when in a twisted condition it behaves in a highly non-linear manner, with the torque dependent upon the level of twist and axial load. Clearly an understanding of the way in which chains may behave and interact with other mooring components (such as wire rope, which also exhibits coupling between axial load and generated torque) when they are in service is essential. However, the sizes of chain that are in use in offshore moorings (typical bar diameters are 75 mm and greater) are too large to allow easy testing. This paper, which is in two parts, aims to address the issues and considerations relevant to torque in mooring chain. The first part introduces a frictionless theory that predicts the resultant torques and ‘lift’ in the links as non-dimensionalized functions of the angle of twist. Fortran code is presented in an Appendix, which allows the reader to make use of the analysis. The second part of the paper presents results from experimental work on both stud-less (41 mm) and stud-link (20.5 and 56mm) chains. Torsional data are presented in both ‘constant twist’ and ‘constant load’ forms, as well as considering the lift between the links.

Publisher

SAGE Publications

Subject

Applied Mathematics,Mechanical Engineering,Mechanics of Materials,Modelling and Simulation

Cited by 5 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Fracture mechanics assessment for mooring chain links tensioned over a curved surface;Applied Ocean Research;2021-12

2. Mooring Fatigue Assessment Evaluating Chain Twist and Out-of-Plane Bending for a Semi-submersible;Journal of Offshore Mechanics and Arctic Engineering;2020-05-05

3. Tension–torsion fatigue behaviour of wire ropes in offshore moorings;Ocean Engineering;2009-07

4. Torsional characterization of ropes used offshore;The Journal of Strain Analysis for Engineering Design;2008-02-01

5. Torque in Mooring Chain. Part 2: Experimental Investigation;The Journal of Strain Analysis for Engineering Design;2005-10-01

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