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Green Retrofitting through Optimisation of Hull-propulsion Interaction – GRIP

机译:通过优化船体推进相互作用进行绿色改造– GRIP

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In the FP7 project GRIP, partners have extensively studied Energy Saving Devices which improve the propulsive efficiency of ships. The research has focussed on an early assessment of the performance, yard processes for the installation of an ESD, structural issues related to ESDs, and the hydrodynamical working principles of ESDs. All the work came together in the final demonstration of the efficiency gain of an ESD on Uljanik built bulk carrier MV Valvoline.To demonstrate the ESD design procedure and the potential performance gain of ESDs, a design competition was held between MARIN, HSVA and Vicus who designed a pre-duct, pre-swirl stator and rudder bulb respectively. Designs were evaluated based on the performance improvement, manufacturability and structural issues. The PSS designed by HSVA came out the best with a reduction of required propulsion power. CFD analysis has shown that the PSS creates a pre-swirl resulting in an increase of the propeller efficiency mainly affecting the upcoming blade trajectory. Speed trial procedures were evaluated by MARIN to come to a procedure to evaluate the performance change with a minimum uncertainty. Speed trials before and after installation of the PSS on the bulk carrier were performed in favourable environmental conditions resulting in a performance improvement of 6.8% at a speed of 16 knots.This paper gives an overview of the work performed in the project by all partners resulting in the successful demonstration.
机译:在FP7项目GRIP中,合作伙伴已对节能装置进行了广泛的研究,这些装置可提高船舶的推进效率。该研究的重点是对性能进行早期评估,安装ESD的堆场过程,与ESD相关的结构问题以及ESD的流体力学工作原理。所有工作共同完成了在Uljanik建造的散货船MV Valvoline上的ESD效率提高的最终演示。为证明ESD设计程序和ESD的潜在性能提高,MARIN,HSVA和Vicus进行了设计竞赛分别设计了预导管,预旋定子和方向舵灯泡。根据性能改进,可制造性和结构问题对设计进行评估。 HSVA设计的PSS在降低所需推进力方面表现最好。 CFD分析表明,PSS会产生预旋流,从而导致螺旋桨效率提高,这主要影响即将到来的叶片轨迹。 MARIN对速度试验程序进行了评估,得出了以最小不确定性评估性能变化的程序。在有利的环境条件下进行PSS在散货船上安装之前和之后的速度试验,以16节的速度提高了6.8%的性能。本文概述了所有合作伙伴在项目中所做的工作,在成功的示范中。

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