会议论文详细信息
7th International Conference on Advanced Concepts in Mechanical Engineering
Moored offshore structures - evaluation of forces in elastic mooring lines
Crudu, L.^1,2 ; Obreja, D.C.^1 ; Marcu, O.^1
Naval Architecture Department, Dunarea de Jos University of Galati, Galati, Romania^1
NASDIS Consulting, Galati, Romania^2
关键词: Classification societies;    Dynamic behaviours;    Dynamic effects;    Experimental test;    Floating structures;    High frequency HF;    Motion evaluation;    Regulatory bodies;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/147/1/012096/pdf
DOI  :  10.1088/1757-899X/147/1/012096
来源: IOP
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【 摘 要 】

In most situations, the high frequency motions of the floating structure induce important effects in the mooring lines which affect also the motions of the structure. The experience accumulated during systematic experimental tests and calculations, carried out for different moored floating structures, showed a complex influence of various parameters on the dynamic effects. Therefore, it was considered that a systematic investigation is necessary. Due to the complexity of hydrodynamics aspects of offshore structures behaviour, experimental tests are practically compulsory in order to be able to properly evaluate and then to validate their behaviour in real sea. Moreover the necessity to carry out hydrodynamic tests is often required by customers, classification societies and other regulatory bodies. Consequently, the correct simulation of physical properties of the complex scaled models becomes a very important issue. The paper is investigating such kind of problems identifying the possible simplification, generating different approaches. One of the bases of the evaluation has been found consideringtheresults of systematic experimental tests on the dynamic behaviour of a mooring chain reproduced at five different scales. Dynamic effects as well as the influences of the elasticity simulation for 5 different scales are evaluated together. The paper presents systematic diagrams and practical results for a typical moored floating structure operating as pipe layer based on motion evaluations and accelerations in waves.

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