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Tandem Hybrid CRP (Contra-Rotating Propeller) System

机译:串联混合式CRP(反向旋转螺旋桨)系统

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摘要

While there are many advantages with electric propulsion vessels, energy loss is considered as its most significant disadvantage. Therefore, the minimization of energy loss and the improvement of the ship's propulsion efficiency are important elements. There are two conceivable elements to improve propulsion efficiency, one is to decrease hull resistance, and the other is to increase the propeller efficiency. Contra-Rotating Propeller (CRP) is one of the solutions to improve the efficiency of propulsion systems, and the tandem type CRP, which is an azimuth pod propeller installation behind the CPP, is considered as an example of practical application. In this paper, an electric propulsion system with the tandem CRP is introduced. By designing a hybrid CRP system that operates a CPP driven by a diesel engine and an azimuth pod propeller driven by an electric motor, the reduction of the percentage of energy loss and the minimization of fuel consumption were made possible. Nakashima's pod propulsion system is based on CPP's and side thrusters' technology. Propeller pitch was determined using an NMRI1-1 CRP program. Since the azimuth pod propulsion system can be used as a stem thruster as well, with this propulsion system, not only an improvement in propulsion efficiency, but also an improvement in maneuverability can be expected.
机译:尽管电动推进器有许多优点,但是能量损失被认为是其最大的缺点。因此,使能量损失最小化和提高船舶推进效率是重要的要素。可以考虑两种提高推进效率的要素,一种是降低船体阻力,另一种是提高螺旋桨效率。相反旋转螺旋桨(CRP)是提高推进系统效率的解决方案之一,而串联式CRP是CPP后面的方位角吊舱螺旋桨装置,被认为是实际应用的示例。本文介绍了一种带有串联CRP的电动推进系统。通过设计一种混合式CRP系统,该系统可操作由柴油发动机驱动的CPP和由电动机驱动的方位角舱螺旋桨,从而可以减少能量损失的百分比,并将燃油消耗降至最低。中岛的吊舱推进系统基于CPP和侧推器技术。使用NMRI1-1 CRP程序确定螺旋桨螺距。由于方位角舱推进系统也可以用作主推力器,因此,利用该推进系统,不仅可以期待推进效率的提高,而且可以期待操纵性的提高。

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