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Influence of a pre-swirl stator and rudder bulb system on the propulsion performance of a large-scale ship model

机译:先旋流定子和方向舵灯泡系统对大型船舶模型推进性能的影响

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摘要

With the implementation of an energy efficiency design index, energy-saving devices (ESDs) have received increasing research interest. In this study, experimental and numerical analyses were performed on a 25-m long ore carrier model to investigate the working mechanism of ESDs comprising a pre-swirl stator and a rudder bulb. The interactions between the hull, propeller, rudder, and ESDs were observed to have a positive effect on the propulsion performance of the large-scale ship model. To elucidate the effects, self-propulsion tests were conducted at sea to determine the thrust and torque coefficients. The sliding mesh method was used to perform numerical simulations of the large-scale ship model for unsteady multiphase flows with different inflow speeds. The wake field at the stern and the pressure distribution on the vessel surface were analysed to investigate the energy-saving mechanism. The results showed that ESDs can effectively ameliorate the propeller slipstream and have a positive interference effect on the large-scale hull. The average gain of the ESDs relative to no-ESDs was up to 3%.
机译:随着能源效率设计指标的实施,节能设备(ESDS)已收到越来越多的研究兴趣。在该研究中,对25米长矿石载体模型进行实验和数值分析,以研究ESD的工作机制,包括预旋流定子和舵灯泡。观察到船体,螺旋桨,方向舵和ESD之间的相互作用对大规模船舶模型的推进性能产生积极影响。为了阐明效果,在海上进行自我推进试验以确定推力和扭矩系数。滑动网格方法用于对具有不同流入速度的非定常多相流的大型船舶模型进行数值模拟。分析船尾的尾部和血管表面上的压力分布,以研究节能机制。结果表明,ESDS可以有效地改善螺旋桨滑翔流,并对大型船体对阳性干扰效应。相对于No-ESD的ESD的平均增益高达3%。

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