相关期刊:《Journal of Ocean University of China》《Journal of Energy and Power Engineering》《China Ocean Engineering》《Chinese Journal of Chemical Engineering》更多>>
supported by the Natural Science Foundation of Shandong Province(Grant Nos.ZR2023ME040 and ZR2022QE118);the Key Technology Research and Development Program of Shandong Province(Grant No.2023CXGC010316);the Natural Science Foundation of Qingdao(Grant No.23-2-1-207-zyyd-jch),and the National Natural Science Foundation of China(Grant No.51709161).
In order to study the response law of vortex-induced vibration(VIV)of marine risers under the combined action of roughness and interference effects,and to reveal the coupling mechanism of roughness and interference ef...
financially supported by the Natural Science Foundation of Shandong Province(Grant Nos.ZR2023ME040 and ZR2022QE118);the Key Technology Research and Development Program of Shandong Province(Grant No.2023CXGC010316);the Natural Science Foundation of Qingdao(Grant No.23-2-1-207-zyyd-jch);the Introduction and Education Plan for Young Innovative talents in Colleges and Universities of Shandong Province(Marine Civil Engineering Materials and Structure Innovation Research Team).
A vortex-induced vibration(VIV)experiment of rough risers with coupling interference effect under a side-by-side arrangement was carried out in a wave-current combined flume.The roughness of the riser was characterize...
financially supported by the National Natural Science Foundation of China (Grant No. 42177167);the Natural Science Foundation of Shandong Province (Grant No. ZR2019QEE008)。
Taking the three-riser group arranged in tandem as the research subject,an experimental study was carried out on the risers arranged in tandem.The purpose is to explore the sensitivity of the dynamic response of each ...
supported and sponsored jointly by the National Natural Science Foundation of China(Grand Nos.51009092 and 50909061);Doctoral Foundation of the Ministry of Education of China(Grand No.20090073120013);the National High Technology Research and Development Program of China(863Program,Grand No.2008AA092301-1)
The dynamic calculations of slender marine risers, such as Finite Element Method (FEM) or Modal Expansion Solution Method (MESM), are mainly for the slender structures with their both ends hinged to the surface an...
supported by the National High Technology Research and Development Program of China(863 Program,Grant Nos.2006AA09A103 and 2006AA09A104)
The coupled hull, mooring and riser analysis techniques in time domain are widely recognized as the unique approach to predict the accurate global motions. However, these complex issues have not been perfectly solved ...
This work was supported by the National High Technology Research;Development Programof China(863Pro-gram,Grant No.2006AA09A107)
According to the characteristics of deepwater top tensioned risers, a simplified model is presented to predict the multi-modal response of vortex-induced vibration (VIV) in non-uniform flow based on energy equilibri...
Owing to the complexity of the pipe-in-pipe (PIP) riser system in structure, load and restraint, many problems arise in the structural analysis of the system. This paper presents a new method for nonlinear static fini...
A modified Newton-Raphson iterative technique is formulated for obtaining the static configuration of the Lazy 'S' flexible marine riser between the floater and mid-arch buoy under its submerged self weight and the ap...
A dynamic response analysis in the frequency domain is presented for risers subjected to combined wave and current loading. Considering the effects of current, a modified wave spectrum is adopted to compute the linear...
A nonlinear dynamic analysis model is estabilished on the basis of 'lumped mass' approach, which takes the influence of the fluid flow within the pipe into consideration. Numerical results are compared with the publis...