Exact(1)
Therefore, when designing truncated mooring system for model testing, mooring damping equivalence should be considered.
Similar(7)
Emphasis is given to the uncertainty sources in model tests involving deepwater mooring lines, risers and dynamic positioning systems and the need for quantifying them.
The truncation design of a mooring system is the foundation of hybrid model testing techniques used in experimental research on deepwater floating platforms owing to the limited size of wave basin.
Physical model tests of floating facilities in deep and ultra-deep water with full-depth mooring system present obstacles because no wave basin is sufficiently large to perform model testing in reasonable scale.
As an example of application, the combined and expanded uncertainties in the model tests of a moored semi-submersible platform were assessed and quantified in terms of motion responses, air gap and mooring line tensions.
In addition, model tests of a 1 70 scaled catenary mooring line are conducted.
In order to achieve the static and dynamic similarities easily in the largely-truncated model tests, an optimization design method of the truncated mooring system is proposed, and the similarities of platform motion responses as well as the mooring lines dynamics are investigated in the largely-truncated model tests.
The hybrid model test techniques and the dynamic behaviors of the truncated mooring lines are also studied.
Related(1)
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