大型海上船舶电力推进系统的演变与发展前景

A. M. Marques Cardoso, E. Popkov, E. Koptjaev
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引用次数: 3

摘要

大型海船在世界贸易、客运和向偏远地区提供供应方面发挥着重要作用。有各种各样的船级,不仅为运输货物而设计,也为执行特殊任务而设计。上述类型的船舶包括旨在支持北极地区航行的破冰船。它们的特点是大排水量和高容量的推进装置,以及频繁反转的动态操作模式。许多其他类型的船舶也使用电力驱动推进系统,这是由于操作条件和可靠性要求。电力推进系统具有通过频繁的重复循环改变旋转方向的能力。目前,交流电力推进系统被广泛使用,取代了过时的直流电动机。回顾电力推进系统,一个顺序的发展变得明显。现代船用电驱动在容量和运行成本效益方面还有待进一步提高。这些任务中的最后一项主要是在转换电源电压频率时以及在电力推进系统的所有部分中提高效率并减少损耗。在实际应用中,随着现代技术的发展,提高电子元件性能的余地已经没有那么大了。在这种情况下,提高船用电力推进系统效率的唯一方法是减少从船用发电机到发动机电机的功能单元的数量。提出了改进船舶电力推进系统的若干技术方案;这种新颖性通过发明专利得到证实。解决效果之一是简化了电力推进系统的功能电路,这符合从船舶能源到电力发动机的过程中功能单元和元件数量减少的总体发展趋势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evolution and Development Prospects of Electric Propulsion Systems of Large Sea Ships
Large sea ships take a huge part in world trade, passenger transport and providing supply to remote areas. There are various ship classes, designed not only for transportation of goods, but also to perform special tasks. The mentioned type of ships includes icebreakers designed to support navigation in the Arctic region. They are distinguished by a large displacement and high-capacity propulsion plant, as well as a dynamic mode of operation with frequent reverses. Many other ship types also use an electric drive in their propulsion systems, which is due to operating conditions and reliability requirements. Electric propulsion systems have the ability to change the direction of rotation with frequent repeated cycles. Currently, AC electric propulsion systems are used most widely, replacing obsolete DC motors. With a retrospective view of electric propulsion systems, a sequential development becomes obvious. The modern marine electric drive should be further improved in terms of its capacity and operation cost-effectiveness. The last of these tasks is mainly to increase efficiency and reduce losses both when converting the frequency of the supply voltage and in general in all parts of the electric propulsion system. In practice, with the modern development of technology, the reserve for improving properties of electric components is not so great. In this case, the single way to increase the efficiency of shipboard electric propulsion systems is reducing the number of functional units on the way from ship generators to the engine motor. The authors proposed a number of technical solutions for improving ship electrical propulsion systems; the novelty is confirmed by patents for inventions. One of the solution effects is the simplification of the functional circuit of the electric propulsion system, which corresponds to the general development trend- a decrease in the number of functional units and elements on the way from the ship energy source to the electric engine.
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