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Optimal thruster location on offshore DP vessels

机译:海上DP船舶上最佳推进器位置

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摘要

During the design process of an offshore vessel, the DP system is not representing one of the primary constraints for the general arrangement of the vessel. Usually the location of the thruster devices is driven by the internal spaces available, i.e. the thrusters position is not optimised to reach the maximum capability. This is also true for a conversion of an existing vessel. Nowadays almost all offshore vessels require the installation of a DP system on board, means that it could be worthy to study more in detail the arrangement of the thrusters in such a way to maximise the capability of the vessel to keep position with a determined amount of power installed on board. In the present work a procedure aimed to find an optimal thruster location on the hull during early design stage will be presented. Using a quasi-static approach for DP capability evaluation, an optimisation procedure based on genetic algorithm has been developed, considering the constraints given by the vessel geometry. The discussion is supported by a test case on a reference vessel, were the original layout is compared with two possible optimised configurations.
机译:在近海船舶的设计过程中,DP系统不是表示血管一般布置的主要约束之一。通常,推进器设备的位置由可用的内部空间驱动,即推进器位置未得到优化以达到最大能力。对于现有船舶的转换,这也是如此。如今,所有海上船只都需要在船上安装DP系统,意味着它可以更详细地研究推进器的布置,以便最大化血管的能力以确定的数量保持位置电源安装在船上。在本工作中,将提出旨在在早期设计阶段期间在船体上找到最佳推进器位置的程序。使用用于DP能力评估的准静态方法,已经开发了基于遗传算法的优化过程,考虑到船舶几何形状给出的约束。在参考容器上的测试用例支持讨论,并将原始布局与两种可能的优化配置进行比较。

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