首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >EXPERIMENTAL STUDY OF WAVE INDUCED LOADS AND MOTIONS ON FLNG IN HEAD AND OBLIQUE SEA WAVES
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EXPERIMENTAL STUDY OF WAVE INDUCED LOADS AND MOTIONS ON FLNG IN HEAD AND OBLIQUE SEA WAVES

机译:波浪波对头和斜海浪中FLNG的载荷和运动的实验研究

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In the past decade, an innovative concept, the floating liquefied natural gas (FLNG) system has been developed as a more effective solution over conventional pipelines for exploiting offshore natural gas resources. Understanding the hydrodynamic behaviour of such a mega structure in a real seaway is essential for determining its performance as well as evaluating the operabilities of on-board facilities and safe offloading. In this paper, experimental study on the hydrodynamic performance of a generic FLNG hull form has been presented. The 1:100 scale model was tested in the Australian Maritime College model test basin for head sea and oblique sea conditions at zero forward speed. The wave induced loads and motions were measured by load cells and linear variable differential transducers (LVDTs) respectively. Experimental uncertainties on each of the measured variables were studied by taking partial differentiations on the uncertainty sources. The time history measurements were decomposed by Fourier series for obtaining frequency domain force/moment and motion transfer functions. The results were compared with numerical solutions from potential flow and Reynolds-Averaged Navier-Stokes (RANS) solvers. A good correlation between the experimental and numerical results has been demonstrated.
机译:在过去的十年中,作为一种创新的概念,浮动液化天然气(FLNG)系统已经被开发出来,它是一种比常规管道更有效的解决方案,可用于开发海上天然气资源。了解这种大型结构在实际航道中的流体动力学行为对于确定其性能以及评估船上设施的可操作性和安全卸载至关重要。在本文中,已对通用FLNG船体形式的水动力性能进行了实验研究。 1:100比例模型在澳大利亚海事学院模型试验盆地中进行了测试,以零前进速度对公海和斜海条件进行了测试。波浪感应的载荷和运动分别通过称重传感器和线性可变差动传感器(LVDT)进行测量。通过对不确定性来源进行部分区分,研究了每个测量变量的实验不确定性。通过傅立叶级数对时程测量值进行分解,以获得频域力/矩和运动传递函数。将结果与势流和Reynolds平均Navier-Stokes(RANS)求解器的数值解进行了比较。实验结果与数值结果之间具有良好的相关性。

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