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PHYSICAL SIMULATION OF THE HULL-TETHER COUPLED DYNAMICS OF A DEEPWATER TLP

机译:深水TLP船体耦合动力学的物理模拟

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摘要

The behavior of TLP merits rigorous numerical and experimental studies. Understanding the coupled dynamics is crucial towards establishing the safety of the structure on survival conditions in one hand and optimization of structure geometry for superior performance on the other. The hull-tether coupled dynamics that occur in very deep water cannot be accurately studied through model tests due to depth limitations of the existing model testing facilities and possible scale effects (in the case of ultra-small scale models). In this paper an experimental methodology is presented for physically simulating the coupled behavior of a single column TLP in a wave basin having dimensions 30m× 30m × 3 m. Combination of model tests and numerical analysis were carried out. The experimental results are presented for hull motions, tether displacements and dynamic tether tension. The tether profiles indicate hull-tether coupling vividly. The results establish the success of the experimental methodology and importance of coupled behavior.
机译:TLP的行为值得进行严格的数值和实验研究。理解耦合动力学对一方面建立结构在生存条件下的安全性以及另一方面优化结构几何以实现卓越性能至关重要。由于现有模型测试设备的深度限制和可能的尺度效应(在超小尺度模型的情况下),无法通过模型测试准确地研究在深水中发生的船体-绳索耦合动力学。本文提出了一种物理上模拟尺寸为30m×30m×3m的流域中单列TLP耦合行为的实验方法。进行了模型测试和数值分析的结合。给出了船体运动,系链位移和动态系链张力的实验结果。系链轮廓生动地显示了船体-系链的耦合。结果建立了实验方法的成功和耦合行为的重要性。

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