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Hydrodynamic Interactions of Three Barges in Close Proximity in A Floatover Installation 总被引:1,自引:1,他引:0
The hydrodynamics of side-by-side barges are much more complex than those of a single barge in waves because of wave shielding, viscous effects and water resonance in the gap. In the present study, hydrodynamic coefficients in the frequency domain were calculated for both the system of multiple bodies and the isolated body using both low-order and higher-order boundary-element methods with different element numbers. In these calculations, the damping-lid method was used to modify the free-surface boundary conditions in the gap and to make the hydrodynamic results more reasonable. Then far-field, mid-field and near-field methods were used to calculate wave-drift forces for both the multi-body system and the isolated body. The results show that the higher-order method has faster convergence speed than the low-order method for the multi-body case. Comparison of different methods of computing drift force showed that mid-field and far-field methods have better convergence than the near-field method. In addition, corresponding model tests were performed in the Deepwater Offshore Basin at Shanghai Jiao Tong University. Comparison between numerical and experimental results showed good agreement. 相似文献
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大型海洋工程结构一般采用吊装法进行海上安装。随着海洋结构物重量的不断增大以及受到起重船吊装能力的限制,大型海上结构物浮托安装技术正成为海上施工安装的1种新方法,并成功应用于浅海固定式平台大型组块和深海浮式海洋平台的海上安装。本文介绍了海洋平台海上浮托安装的步骤、关键缓冲设备,列举了一些国内外的安装工程实例,指出了浮托法的关键技术,最后针对某工程实例,利用SESAM软件进行浮托法水动力分析。 相似文献
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