刚度
扭转(腹足类)
结构工程
潜艇
抗弯刚度
计算机科学
工程类
海洋工程
医学
外科
作者
Panagiotis Delizisis,Ioannis Dolianitis,Dimitrios Chatzipetros,Vasileios G. Kanas,Georgios Georgallis,Konstantinos Tastavridis,Antonios Stamelos,Efstratios Angelis
标识
DOI:10.1115/omae2021-63238
摘要
Abstract Submarine, export cables behave, to some point, as long, flexible cylindrical bodies. Their mechanical performance is crucial during laying and operating processes, which depends to a large extent on their stiffness. Although theoretical methods, used to estimate cable stiffness, are currently available, it is difficult to account for the various physical mechanisms involved, such as internal friction, residual torsion and ‘relaxation’ effects. These mechanisms are expected to affect cable stiffness and should be included some way. To represent more realistically cable stiffness, full-scale tests are performed in this paper. The deviation between theoretical and experimental values appears to be significant in certain cases: hence, non-realistic values for cable stiffness would occur if the stiffness estimation relied only on the theoretical methods. Interesting results, affording an in more depth insight and allowing for a better understanding of the cable mechanical performance, are presented in this paper.
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