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Modeling and control strategy of an oscillating water column-wave energy converter with an impulse turbine module

机译:带有脉冲涡轮模块的振荡水柱波能量转换器的建模和控制策略

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The global energy demand requires alternative resource from the fossil fuels and nuclear fission. Ocean energy should take in charge of a key role in renewable energy due to the high density and vast amount of its energy in the near future. In particular, an oscillating water column-wave energy converter (OWC-WEC) is one of the most promising devices to capture energy from the ocean waves. This kind of devices consists of a capture chamber, power take off (PTO) module such as a Wells turbine or an impulse turbine, and a generator. An overall efficiency of this device is determined by the efficiency of each component: wave to pneumatic conversion in the capture chamber, pneumatic to mechanical conversion in the PTO, and mechanical to electrical conversion in the generator. Among them, the second stage has a high nonlinearity which is a function of flow coefficient. In order to achieve the good performance, the PTO module should been operated with an optimal flow coefficient. Meanwhile, considering the grid connection, it is also important that the device provides a constant voltage. Since the induced voltage of the generator is proportional to rotor angular speed, a controller for the constant angular speed is also required.
机译:全球能源需求需要来自化石燃料和核裂变的替代资源。海洋能源应在可再生能源中发挥关键作用,因为在不久的将来,海洋能源的密度高且数量巨大。特别是,振荡水柱波能量转换器(OWC-WEC)是从海浪中捕获能量的最有希望的设备之一。这种设备由一个收集室,一个取力器(PTO)模块(例如韦尔斯涡轮机或脉冲涡轮机)和一个发电机组成。该设备的整体效率取决于每个组件的效率:捕获室中的波到气动转换,PTO中的气动到机械转换以及发电机中的机械到电转换。其中,第二阶段具有高非线性,这是流量系数的函数。为了获得良好的性能,PTO模块应以最佳流量系数运行。同时,考虑到电网连接,设备提供恒定电压也很重要。由于发电机的感应电压与转子角速度成正比,因此还需要用于恒定角速度的控制器。

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