The Dynamic Response of the Platform Mooring Conditions

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Abstract:

Using the finite element ANSYS workbench platform Hydrodynamic Diffraction and Hydrodynamic Time Response Module, taking a self-elevating offshore mooring location as a study case for the corresponding value calculated the dynamic response of the platform. Studied in the wind, waves and currents under load, platforms and mooring ropes coupled motion in case of time-domain response analysis, and get mooring ropes mooring and platform displacement force-time curve. Methods discussed in this paper have a certain reference value for offshore platform mooring positioning.

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2067-2072

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January 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Hongzhi Luo, Zhanbin Meng. Thedevelopment of deepwater jack-up drilling platform [J]. China Offshore Platform. 2010, 8. VOL. 25 No. 4 In Chinese.

Google Scholar

[2] Jiaming Wu. The evolution of offshore drilling mode and the characteristics of different types of mobile drilling platform [J]. Science Technology and Engineering. 2013, 4. VOL. 13 NO. 10 In Chinese.

Google Scholar

[3] Yue Xiao, Yanying Wang. Calculation and analysis of the mooring system of floating body [J]. Journal of Dalian University of Technology. 2005,45(5): 628-686. In Chinese.

Google Scholar

[4] Shixiao Fu, Ju Fan, Xujun Chen, Weicheng Cui. Method for analysis of mooring system of floating body considering elastic deformation [J]. Ship Mechanics. 2004, 8(2):47-54. In Chinese.

Google Scholar

[5] Quanming Liao, Min Gu, Zhanming Yang, Decai Zhou, Xin Yuan. Experimental study of the buoy on wave [J]. China Shipbuilding. 2003, 44(10): 359-366. In Chinese.

Google Scholar

[6] Miao QM, Du SX, Dong SY, Wu YS. Hydrodynamic analysis of a moored very large floating structure. Proceedings of International workshop on very large floating structures [J]. 1996, Hayama, Japan: 201-208.

Google Scholar

[7] Xianglu Huang, Xiaohong Chen, Ju Fan. Frequency domain algorithm of anchoring floating structures [J]. Journal of Shanghai jiaotong university. 2001, 35(10): 1470-1476. In Chinese.

Google Scholar

[8] API recommended practice 2SK 3rd ed. Design and Analysis of Station keeping Systems for Floating Structures[S]. American Petroleum Institute, (2005).

Google Scholar