Experimental Study on the Effects of Mooring System on Air Gap Response of Semi-Submersible Platform

Xu Li, Longfei Xiao, Handi Wei, Mingyue Liu
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Abstract

The air gap response is crucial for the safe design and operation of large-volume floating platforms such as semi-submersible and tension leg platforms. It is a complex task to perform numerical simulation on the air gap response considering the wave free surface elevation and the motions of the floating vessel. Therefore, the prediction of air gap response still relies heavily on model tests. This paper attempts to investigate the effects of the mooring system, especially the effects of the length of mooring lines, on the air gap response of semi-submersible platform based on model tests results. The scaled model of the semi-submersible platform is supported by a symmetric mooring system composed of 8 mooring lines. A set of model tests with different length of mooring lines was performed in the State Key Laboratory of Ocean Engineering basin at Shanghai Jiao Tong University, and the air gap responses of 15 locations were measured using wave probes. The results indicate that the mooring system plays an important role in the air gap response of semi-submersible platform.
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系泊系统对半潜式平台气隙响应影响的实验研究
气隙响应对于半潜式平台和张力腿平台等大型浮式平台的安全设计和运行至关重要。考虑波浪自由面高程和浮船运动对气隙响应进行数值模拟是一项复杂的任务。因此,气隙响应的预测在很大程度上仍然依赖于模型试验。本文试图在模型试验的基础上,研究系泊系统对半潜式平台气隙响应的影响,特别是系泊绳长度的影响。半潜式平台的缩尺模型由8根系泊线组成的对称系泊系统支撑。在上海交通大学海洋工程国家重点实验室进行了一组不同系泊绳长度的模型试验,利用波浪探头测量了15个位置的气隙响应。结果表明,系泊系统对半潜式平台气隙响应起着重要作用。
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