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Insight into tribological problems of green ship and corresponding research progresses

机译:认识绿色船舶的摩擦学问题及其研究进展

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The so-called “green ship” is being regarded as a potential solution to the problems that the shipping industry faces, such as energy conservation and environmental protection. Some new features, such as integrated renewable energy application, biomimetic materials, and antifriction and wear resistant coating have been accepted as the typical characteristics of a green ship, but the tribology problems involved in these domains have not been precisely redefined yet. Further, the related research work is generally focused on the technology or material itself, but not on the integration of the applicable object or green ship, marine environment, and tribological systematical analysis from the viewpoint of the energy efficiency design index (EEDI) and ship energy efficiency management plan (SEEMP) improvements. Aiming at the tribology problems of the green ship, this paper reviews the research status of this issue from three specific domains, which are the tribology problems of the renewable energy system, tribological research for hull resistance reduction, and energy efficiency enhancement. Some typical tribological problems in the sail‐auxiliary system are discussed, along with the solar photovoltaic system and hull drag reduction in traditional marine mechanical equipment. Correspondingly, four domains that should be further considered for the future development target of the green ship are prospected.
机译:所谓的“绿色船”被认为是解决航运业所面临的诸如节能和环境保护等问题的潜在解决方案。一些新功能,例如集成的可再生能源应用,仿生材料以及减摩和耐磨涂层已被接受为绿色船舶的典型特征,但是这些领域中涉及的摩擦学问题尚未得到精确的重新定义。此外,相关研究工作通常集中在技术或材料本身,而不是从能效设计指数(EEDI)和船舶的角度,将适用对象或绿色船舶,海洋环境和摩擦学系统分析整合在一起。能源效率管理计划(SEEMP)的改进。针对绿色船舶的摩擦学问题,本文从可再生能源系统的摩擦学问题,降低船体阻力和提高能效的摩擦学三个特定领域综述了该问题的研究现状。讨论了帆辅助系统中的一些典型摩擦学问题,以及太阳能光伏系统和传统船用机械设备中的船体减阻。相应地,展望了绿色船舶未来发展目标应进一步考虑的四个领域。

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