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NUMERICAL EXPERIMENTAL TOOLS FOR OFFSHORE DP OPERATIONS

机译:海上DP作业的数值和实验工具

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DP crane vessel operation can be analyzed based on the uncoupled system or considering the fully coupled system. Parameters such as top-crane acceleration, thruster capability and vessel motions are evaluated for several environmental conditions. Numerical and experimental tools are used and the important result of this analysis is the maximum condition in such that the operation can be safely executed.Those operations are critical, since the vessel is kept in close proximity with other unit and large loads are transported in a pendulum configuration. A precise positioning of the crane-vessel is required, in order to avoid unsafe relative motions, as well as keep the load being transported on a stable position.The uncoupled analysis approach does not consider the influence of the other unit in the crane vessel. This paper presents a methodology for evaluating a DP crane vessel in the offshore operations (DP crane vessel, load being transported, mooring and assistance lines, platform) considering the fully coupled method based on integration of the in house codes with the commercial code WAMIT~® system. The methodology is based on the integration of numerical and experimental tools. The dimensions of the transported modules and the proximity of the vessels change the behavior of the vessel motions and line tensions. So, a full nonlinear time domain simulator (TPN - Numerical Offshore Tank) is used to perform the coupled analysis of the system subjected to several environmental conditions, considering also the dynamics of the suspended load and the hydrodynamic interference between the bodies. In order to calibrate the numerical model, several experimental tests are performed such as wind tests with some positions of the crane, tests in towing tanks to evaluated the current effects, thrusters tests to calibrate DP algorithm and wave test with the two bodies. In some cases a complementary CFD analysis is requested in order to evaluate the current and wind shadow effect. Several alternative relative positions between the vessels can be evaluated. This methodology results a more accurate estimative of the system performance.
机译:可以基于非耦合系统或考虑完全耦合系统来分析DP起重机船的运行。在几种环境条件下评估诸如顶部起重机加速度,推进器能力和船舶运动等参数。使用了数值和实验工具,该分析的重要结果是使操作得以安全执行的最大条件。这些操作至关重要,因为该容器与其他设备保持紧密的距离,并且较大的负载在一个容器中进行运输。摆配置。为了避免不安全的相对运动以及将负载保持在稳定的位置,需要对起重机容器进行精确定位。非耦合分析方法没有考虑起重机容器中其他单元的影响。本文介绍了一种基于内部代码与商业代码WAMIT〜的完全耦合方法的评估海上作业中的DP起重机船(DP起重机船,正在运输的货物,系泊和辅助线,平台)的方法。 ®系统。该方法基于数​​值和实验工具的集成。所运输模块的尺寸和容器的接近程度会改变容器运动和线张力的行为。因此,使用完整的非线性时域仿真器(TPN-海上数字储油罐)进行了系统在多种环境条件下的耦合分析,同时还考虑了悬吊负载的动力学和物体之间的流体动力干扰。为了校准数值模型,进行了一些实验测试,例如在起重机的某些位置进行风测试,在拖曳油箱中进行测试以评估电流影响,在推进器测试中校准DP算法以及对两个车身进行波浪测试。在某些情况下,需要进行补充CFD分析,以评估电流和风影效应。可以评估血管之间的几种其他相对位置。这种方法可以更准确地估计系统性能。

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