Hydrodynamic Response of Tension Leg Platforms with Perforated Members

S. Chandrasekaran, N. Madhavi, S. Sampath
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引用次数: 12

Abstract

Tension-Leg Platforms (TLPs) are commonly preferred offshore structures for the deep-water oil exploration. Their reduced response to the encountered waves is achieved by their compliancy. This innovative structural design dampens the vertical motion (heave) of the platform but the large horizontal movements (surge, sway and yaw motion) cause inconvenience to the people on board, though the platform remains stable for the operational sea state. Coastal and offshore structures are constructed with the protective perforated layers mainly to reduce the direct impact caused by the waves. Present study highlights the detailed experimental investigations carried out on the scaled model of the TLP with the perforated members under regular waves. Based on the experimental investigations, it is seen that there is a significant reduction in the dynamic response of the TLP with the perforated columns. Encompassing column members with the perforated outer cover is seen as one of the effective method of retrofitting offshore structures to improve their serviceability.
带孔构件张力腿平台的水动力响应
张力腿平台(TLPs)是深水石油勘探的首选海上结构。它们对遇到的波浪的响应减小是由于它们的顺应性。这种创新的结构设计抑制了平台的垂直运动(起伏),但大的水平运动(浪涌、摇摆和偏航运动)会给船上的人带来不便,尽管平台在运行海况下保持稳定。在海岸和近海建筑上设置保护性穿孔层主要是为了减少海浪的直接冲击。本文重点研究了规则波作用下带孔构件的张力腿桥比例模型的详细实验研究。通过试验研究发现,有了穿孔柱后,张力腿桥的动力响应明显减小。用穿孔外盖包裹柱构件被认为是改造海上结构以提高其适用性的有效方法之一。
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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