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ESTIMATING SECOND ORDER WAVE DRIFT FORCES AND MOMENTS FOR CALCULATING DP CAPABILITY PLOTS

机译:估算二阶波漂移力和弯矩以计算DP能力图

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The DP capability plot is a useful tool to show the limitations of a dynamic positioning system for ships or offshore structures under loading from wind, waves and ocean currents. At the preliminary design stage, it is desirable to use fast methods for calculating the forces and moments caused by the environment, preferably without the need for CFD simulations or model experiments. Empirical methods are available for predicting aerodynamic forces and moments, and hydrodynamic forces and moments from currents, but little is published for second order wave drift forces. Wave drift forces and moment calculations have been carried out using WAMIT, for a series of ship hulls from OSVs to VLCCs and the effects of wave direction and frequency on the Surge, Sway, and Yaw forces and moment have been studied. The presentation of the results allows the user to interpolate the resulting drift forces and moments as a function of wave direction for a given ship size. In terms of wave drift loads calculation, it is found that the very large vessels are dominant in the low frequency waves, while smaller size ships are in high frequencies. The wave frequency and direction in which maximum drift load occurs depends on the ship size.
机译:DP能力图是一个有用的工具,可以显示船舶,海上结构在风,浪和洋流作用下的动态定位系统的局限性。在初步设计阶段,希望使用快速方法来计算由环境引起的力和力矩,最好不需要CFD模拟或模型实验。经验方法可用于预测空气动力和力矩以及来自水流的流体动力和力矩,但是关于二阶波浪漂移力的文献很少。已经使用WAMIT对从OSV到VLCC的一系列船体进行了波浪漂移力和力矩计算,并且研究了波浪方向和频率对浪涌,摇摆和偏航力和力矩的影响。结果的呈现使用户可以针对给定的船舶尺寸内插所得的漂移力和力矩作为波浪方向的函数。从波浪漂移载荷的计算来看,发现大型船在低频波中占主导地位,而较小型的船在高频中占主导地位。发生最大漂移载荷的波浪频率和方向取决于船的大小。

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