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Contra-rotating podded propulsor and its full-scale model tests

机译:对转荚式推进器及其全尺寸模型试验

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摘要

The global warming problem is concerned in the world. The Japanese Government has formalized the acceptance of Kyoto Protocol on 4th of June 2002. Under the Protocol, Japan has an obligation of greenhouse gas (CO_2 etc.) emissions reduction of 6% below 1990 levels for the first commitment period of 2008-2012. The restriction concerning the exhaust of NOx and SOx by ships is discussed in the International Convention for the Prevention of Pollution from Ships (MARPOL). Under the Ministry's of Land Infrastructure and Transport (MLIT) national research project named the Super Eco-Ship Project, the National Maritime Research Institute of Japan (NMRI) has been played major role of it since April 2001. Super Eco-Ship would embody a technical breakthrough in meeting certain requirements of coastal shipping such as reducing the burden on the environment and the logistics costs and improving the living and working conditions on board. Super Eco-Ship has highly efficient electrical propulsion system featuring the podded propulsor with contra-rotating propeller (CRP). Advanced concept and systems are applied in the research and development of the Super Eco-Ship. Flexibility in the arrangement of main engine and in the hull form design is realized by the electric propulsion system. New design tools based advanced concept and methodology are applied. Hull form design method by means of CFD simulation and CAD are performed to design optimum hull form for electric propulsion system. The high propulsive efficiency due to the combination with the optimum hull design and podded propulsor enables the reduction of CO_2 compared with the conventional ship. The podded propulsor with CRP enables drastically good maneuverability and flexible control system in ship operation as well as high propulsive efficiency. The pilot becomes easy operation in berthing time by the control system of the podded propulsor. In August 2004, a reliability test run of a prototype of the propulsor including the motors and sealing/bearing was completed in a dock. The practicality of podded propulsor with CRP was confirmed from this result. In this paper, the results of this tests is reported.
机译:全球变暖问题是世界关注的问题。日本政府已于2002年6月4日正式接受《京都议定书》。根据该议定书,日本有义务在2008-2012年的第一个承诺期内将温室气体(CO_2等)排放量降低到1990年水平以下6%。 《防止船舶造成污染的国际公约》(MARPOL)讨论了有关船舶排放NOx和SOx的限制。根据国土交通省(MLIT)的国家研究项目,即超级生态船项目,日本国家海洋研究所(NMRI)自2001年4月起一直发挥主要作用。超级生态船将体现满足沿海运输某些要求的技术突破,例如减轻环境负担和物流成本,改善船上的生活和工作条件。超级生态船拥有高效的电力推进系统,其荚形推进器带有反向旋转螺旋桨(CRP)。先进的概念和系统被应用于超级生态船的研发。电动推进系统实现了主机布置和船体形式设计的灵活性。应用了基于高级概念和方法论的新设计工具。运用CFD仿真和CAD方法进行了船体造型设计,设计了电力推进系统的最佳船体造型。与最佳船体设计和荚状推进器相结合,具有很高的推进效率,与传统船舶相比,可以减少CO_2。带有CRP的豆荚式推进器可在船舶操作中实现出色的机动性和灵活的控制系统,并具有很高的推进效率。飞行员通过荚状推进器的控制系统可以在泊位时间内轻松操作。 2004年8月,在船坞内完成了推进器原型的可靠性测试,该原型包括电机和密封/轴承。从该结果证实了带有CRP的荚膜推进器的实用性。在本文中,报告了该测试的结果。

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