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MODEL TESTING OF DYNAMIC CHARACTERISTICS OF COMPLIANT BUOYANT TOWERS

机译:柔性浮力塔动态特性的模型测试

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摘要

Rigorous deepwater wave-basin tests for a series of reduced (1/80) scale model compliant buoyant towers (CBT) have recently been conducted in the Deep-Sea Basin at the National Maritime Research Institute (NMRI) in Tokyo, Japan. The models have been designed to comply with the theoretical conditions of the hydro-elastic similitude. The models are based on a conceptual prototype CBT design suited for the Vincent Field situated on the North West Shelf of Western Australia. The research has been funded by the Australian Research Council.rnThree parameters, namely, seabed stiffness, additional buoyancy and platform payload, were varied to investigate how each influence the performance of the CBT. Only one portion of the tests conducted at the NMRI is reported here. These include results and findings from free decay and load-deflection tests that were performed to achieve the structure's natural periods, modal dampening factors and the tower's global stiffness. These dynamic characteristics and responses obtained from the tests are compared with their finite element analysis (FEA) counterpart.
机译:最近在日本东京国立海洋研究所(NMRI)的深海盆地对一系列缩小(1/80)比例模型兼容浮力塔(CBT)进行了严格的深水波盆测试。这些模型的设计符合水弹性模拟的理论条件。这些模型基于适用于西澳大利亚州西北大陆架上的Vincent Field的概念性CBT设计原型。该研究由澳大利亚研究理事会资助。rn改变了三个参数,即海床刚度,附加浮力和平台有效载荷,以研究每个参数如何影响CBT的性能。此处仅报告了在NMRI进行的部分测试。其中包括为实现结构的自然周期,模态阻尼系数和塔的整体刚度而进行的自由衰减和载荷挠度测试的结果和结果。从测试中获得的这些动态特性和响应与它们的有限元分析(FEA)相比较。

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