A Numerical Simulation of Non-Linear Air-Gap for Deepwater Semi-Submersible Platform

Zhuang Kang, Yan-shuai Zhang, Haibo Sui, Rui Chang
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引用次数: 1

Abstract

Air gap is pivotal to the hydrodynamic performance for the semi-submersible platform as a key characteristic for the strength assessment and safety evaluation. Considering the metocean conditions of the Norse Sea, the hydrodynamic performance of a semi-submersible platform has been analyzed. Based on the three-dimensional potential flow theory, and combined with the full QTF matrix and the second-order difference frequency loads, the nonlinear motion characteristics and the prediction for air gap have been simulated. The wave frequency motion response, the second-order nonlinear air gap response and nonlinear motion response of the platform have been analyzed. By comparing the simulation results, the air gap response of the platform considering the nonlinear motion is more intense than the results simulated by the first-order motion without considering the second-order difference frequency loads. Under the heavy metocean conditions, for the heave and pitch motion of the platform, the non-linear simulation values for some air gap points and areas are negative which means the wave slam has been occurred, but the calculation results of linear motion response indicate that the air gap above has not appeared the wave slamming areas. The simulation results present that the influence of the second-order wave loads is a critical part in the air gap prediction for the semi-submersible platform.
深水半潜式平台非线性气隙数值模拟
气隙是半潜式平台水动力性能的关键,是平台强度评估和安全评价的关键指标。考虑挪威海的海洋条件,对半潜式平台的水动力性能进行了分析。基于三维势流理论,结合全QTF矩阵和二阶差频载荷,对气隙的非线性运动特性和预测进行了模拟。分析了平台的波频运动响应、二阶非线性气隙响应和非线性运动响应。通过仿真结果对比,考虑非线性运动的平台气隙响应比不考虑二阶差频载荷的一阶运动的平台气隙响应更强烈。在高风浪条件下,对于平台的升沉和俯仰运动,部分气隙点和区域的非线性模拟值为负值,表明平台已经发生了浪击,但线性运动响应的计算结果表明,平台上方的气隙没有出现浪击区。仿真结果表明,二阶波载荷的影响是半潜式平台气隙预测的关键因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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