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The effect of short-crested waves on the dynamic responses of semisubmersible: A comparison of long and short-crested waves with current

机译:短冠波对半机械动态响应的影响:对电流的长和短冠波的比较

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As the development of oil and gas industry has progressed into deeper water depth, the research and development focused on this particular region structures have become essential. In the design of the offshore structures, wave force is always the most significant environmental force among. Literature has been reported that long-crested waves, which widely used in the design of offshore structures, are rarely found in the real sea. Whereby, this condition is well represented by the short-crested waves. The short-crested waves were defined as the waves formed by the linear summation of a series of long-crested waves that propagated to different directions, which is randomly varying in the magnitude and directions. Literature as well has been reported that design considering long-crested waves would be overestimated. Hence, in order to simulate the responses of the structures in real sea condition and provide an optimum design for the structures, short-crested waves are preferable. As per the knowledge of authors, research focused on the investigation of the dynamic responses of semi-submersible particularly focusing on short-crested waves and current concurrently has yet been found. In this study, a numerical comparative study on a typical eight-column semi-submersible model had been conducted. Frequency domain method, which adopted the Morison Equation and wave spectrum, was utilized to obtain the dynamic responses of a semi-submersible platform responses in surge, heave, and pitch in term of Response Amplitude Operator (RAO). The maximum amplitude of each motion was determined and compared. From the results, it has proven that the responses of the semi-submersible platform are smaller as compared to the one due to long-crested waves. Whereby, the results indicated that the dynamic responses for short-crested waves are approximately 50% lower.
机译:随着石油和天然气行业的发展进展到更深的水深,重点关注这种特定区域结构的研究和开发成为必不可少的。在近海结构的设计中,波力始终是最重要的环境力。据报道,文学据报道,广泛应用于海上结构的长期波浪,很少在真正的海中发现。由此,这种情况是由短冠波的良好代表。短峰波被定义为通过一系列长凤头波传播到不同的方向,这是在随机的幅度和方向的变化的线性求和形成的波。据报道,文献也据报道,考虑长冠的波浪的设计将被过高估计。因此,为了模拟真实海部条件中结构的响应并为结构提供最佳设计,优选短冠状波。根据作者的知识,研究专注于调查半潜水的动态响应特别关注短视波浪和兼职的目前。在该研究中,已经进行了对典型的八柱半潜式模型的数值比较研究。采用Morison方程和波谱的频域方法,以获得响应幅度算子(RAO)期间的半潜式平台响应的半潜式平台响应的动态响应。确定并比较每个运动的最大幅度。从结果中,证明了与由于长顶波浪的波浪相比,半潜式平台的响应较小。由此,结果表明,短冠波的动态响应降低了约50%。

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