不规则波浪条件下混合动力船舶推进负荷的存储系统调平

M. Acanfora, F. Balsamo, M. Fantauzzi, D. Lauria, D. Proto
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引用次数: 1

摘要

针对船舶在不规则波浪条件下航行时的推进功率调平问题,研究了最合适的储能系统的确定问题。功率不均匀源于螺旋桨盘处不同的流动条件,这种流动条件以一种相当复杂的方式引起扭矩和轴速的变化。在本文中,通过将存储性能与海浪周期相关联来确定更合适的存储系统,这表明使用阈值频率,允许在两种电能存储技术之间进行选择,即超级电容器和电池。这项研究是针对一艘由电动机驱动的Ro-Pax渡轮进行的。在不规则海域对船舶动力学进行数值模拟,并结合螺旋桨在波浪中的行为,可以估计动力推进谱。对数值结果的分析表明,由于海面不规则引起的功率波动具有频率高于阈值频率的特征。因此,这些结果表明超级电容器在最大限度地减少电力系统对电力不均匀性的要求方面的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Load levelling through Storage System for Hybrid Diesel Electric Ship Propulsion in Irregular Wave Conditions
This paper concerns the identification of the most suitable electrical energy storage system, devoted to propulsion power leveling of ship sailing in irregular wave conditions. Power irregularity originates from different flow conditions at the propeller disk that, in a quite complex way, causes torque and shaft speed variations. In this paper, the more adequate storage system is identified by relating storage performances with the period of the sea waves that suggests the employment of a threshold frequency, which allows choosing between two electrical energy storage technologies, namely supercapacitor and battery.This study is carried out for a Ro-Pax ferry powered by an electrical motor. Numerical simulations of ship dynamics in irregular seas, combined with propeller behaviour in waves, allow the estimation of the power propulsion spectra. The analysis of these numerical outcomes discloses that the power fluctuations due to irregular sea are characterized by frequencies higher than the threshold frequency. Therefore, these results indicate the suitability of supercapacitor in minimizing the irregularity of electrical power requested to the electrical power system.
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