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Tribological design constraints of marine renewable energy systems

机译:海洋可再生能源系统的摩擦学设计限制

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摘要

Against the backdrop of increasing energy demands, the threat of climate change and dwindling fuel reserves, finding reliable, diverse, sustainable/renewable, affordable energy resources has become a priority for many countries. Marine energy conversion systems are at the forefront of providing such a resource. Most marine renewable energy conversion systems require tribological components to covert wind or tidal streams to rotational motion for generating electricity while wave machines typically use oscillating hinge or piston within cylinder geometries to promote reciprocating linear motion. This paper looks at the tribology of three green marine energy systems, offshore wind, tidal and wave machines. Areas covered include lubrication and contamination, bearing and gearbox issues, biofouling, cavitation erosion, tribocorrosion, condition monitoring as well as design trends and loading conditions associated with tribological components. Current research thrusts are highlighted along with areas needing research as well as addressing present day issues related to the tribology of offshore energy conversion technologies.
机译:在能源需求不断增加,气候变化的威胁和燃料储量减少的背景下,寻找可靠,多样化,可持续/可再生,负担得起的能源已经成为许多国家的当务之急。海洋能源转换系统处于提供此类资源的最前沿。大多数海洋可再生能源转换系统都需要摩擦学的成分来隐蔽风或潮汐流以旋转运动来发电,而波浪机通常会在圆柱体几何形状内使用摆动铰链或活塞来促进往复直线运动。本文着眼于三种绿色海洋能源系统的摩擦学,即海上风能,潮汐和波浪机。涉及的领域包括润滑和污染,轴承和变速箱问题,生物污垢,气蚀,摩擦腐蚀,状态监测以及与摩擦学组件相关的设计趋势和负载条件。重点介绍了当前的研究重点以及需要研究的领域,并解决了与近海能源转换技术摩擦学相关的当今问题。

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