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Hydro Power: The Potential of a Novel Marine and Hydrokinetic Turbine Technology

机译:水电:新型海洋和水力涡轮机技术的潜力

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Marine and hydrokinetic (MHK) turbine development projects use power converters to convert harnessed variable power to grid compatible constant frequency AC. Using power converters in similar projects such as harnessing tidal energy through bi-directional rotor blades, or by using direct-drive technology for harnessing tidal and ocean wave energy, are rapidly expanding all around the world. However, power converters are known to have the lowest mean-time-to-failure among turbines' components and have significant impact on increasing the cost of energy, especially at larger MHK turbine scales. This work proposes the potential of a novel MHK turbine drivetrain with three main modules. The first module is an "energy harnessing module" to harness variable hydrokinetic power. The waterwheel with a large catchment area is effective in harnessing low head, free flowing hydrokinetic energy. The second module is a novel "speed controlling module" that is a replacement of currently used power converters; it is the focus of this work. It produces a constant speed output from a variable input speed. Finally, the third module is the "power generating module" that generates grid-compatible constant-frequency electricity. The test results showed the superior performance of the proposed speed converter in obtaining constant speed frequency output from a variable input speed range.
机译:海洋和水动力学(MHK)涡轮发育项目使用功率转换器将利用的可变功率转换为网格兼容恒定频率AC。在类似项目中使用电源转换器,例如通过双向转子刀片利用潮汐能,或者通过使用用于利用潮汐和海浪能量的直接驱动技术,在世界各地迅速扩展。然而,已知电力转换器具有涡轮机组件中的最低平均故障,并且对增加能量成本具有显着影响,尤其是在较大的MHK涡轮秤上。这项工作提出了一种具有三个主要模块的新型MHK涡轮机传动系统的潜力。第一模块是一个“能源利用模块”,用于利用可变水力电力。具有大型集水区的水车有效地利用低头,自由流动的水力能量。第二个模块是一种新颖的“速度控制模块”,它是当前使用的电源转换器的更换;这是这项工作的重点。它产生从可变输入速度的恒定速度输出。最后,第三个模块是产生网格兼容恒定电力的“发电模块”。测试结果显示了所提出的速度转换器的优越性,在从可变输入速度范围内获得恒定速度频率输出。

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