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Analysis of a single point tensioned mooring system for station keeping of a contra-rotating marine current turbine

机译:单点张紧式系泊系统用于船舶对流旋转的分析

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The Energy Systems Research Unit within the Department of Mechanical Engineering at the University of Strathclyde has developed a novel contra-rotating tidal turbine (CoRMaT). Novel aspects of this turbine include two contra-rotating sets of rotor blades directly driving an open-to-sea permanent magnet generator (PMG). The balancing of reactive forces by the use of contra-rotation enables the use of a single-point compliant mooring system for station keeping. A series of tank and sea tests have led to the deployment and demonstration of a small stand-alone next generation tidal turbine. The stability of a single-point mooring system is examined and power quality from the direct drive generator is evaluated. It is noted that good stability from a single-point mooring can be achieved within a real tidal stream; however from sea testing of the turbine off the west coast of Scotland in the Sound of Islay, it is shown that some instabilities in device station keeping may have an effect on the output electrical power quality. Finally, the scaling up of the power take-off and delivery options for a 250 kW production prototype are described and assessed. It was concluded that the most promising option was an enlarged version of the system already tested, namely a direct-drive contra-rotating PMG.
机译:斯特拉斯克莱德大学机械工程系的能源系统研究部门开发了一种新型的逆向潮流涡轮机(CoRMaT)。该涡轮机的新颖方面包括直接驱动海上永磁发电机(PMG)的两组反向旋转的转子叶片。通过使用反向旋转来平衡反作用力,可以使用单点顺应系泊系统来保持站位。一系列的储罐和海上试验导致了小型独立下一代潮汐涡轮机的部署和演示。检查单点系泊系统的稳定性,并评估直接驱动发电机的电能质量。注意,在实际的潮汐流中,可以从单点系泊获得良好的稳定性。但是,从艾莱岛之声在苏格兰西海岸外的透平机进行海上测试后,可以看出,设备站保持的某些不稳定性可能会影响输出电功率质量。最后,描述并评估了250 kW生产原型的取力器和输出选件的按比例放大。结论是,最有希望的选择是已经测试的系统的扩大版本,即直接驱动反向旋转PMG。

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