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Study of the turbine power output of an oscillating water column device by using a hydrodynamic - Aerodynamic coupled model

机译:水-气动力耦合模型对摆式水塔装置汽轮机输出功率的研究。

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The availability of clean energy of wind waves is enough to meet current demand of the world, attracting researches to find devices with good performance to extract this type of energy. The oscillating water column converter is a type of device that has been extensively studied for this purpose. This paper describes a numerical analysis of an onshore oscillating water column device taking into account hydrodynamic and aerodynamic coupling, performance curves of the turbine and air pressure control by a relief valve. The numerical analyses are carried out by the Fluinco model, based on slightly compressible flow method to solve the Navier Stokes equations, and employing the two-step semi-implicit Taylor Galerkin method. The aerodynamic model is based on the first law of thermodynamics applied to the air column inside the chamber and on turbines similar to Pico's. The turbine power output with air pressure control inside the chamber due to a relief valve is compared to the one without control. A significant increase in the power output by using the pressure control in comparison with that without control is observed. The analysis of the turbine power output considers different turbine diameters and ranges of rotational speeds. (C) 2016 Elsevier Ltd. All rights reserved.
机译:风浪清洁能源的可用性足以满足世界当前的需求,吸引了研究人员寻找性能良好的设备来提取此类能量。振荡水塔转换器是为此目的而进行了广泛研究的一种设备。本文介绍了一种岸上振荡水柱装置的数值分析,其中考虑了流体动力和空气动力耦合,涡轮机的性能曲线以及通过安全阀控制的气压。由Fluinco模型进行数值分析,基于微压缩流方法求解Navier Stokes方程,并采用两步半隐式Taylor Galerkin方法。空气动力学模型基于热力学第一定律,该定律适用于室内的空气柱以及类似于Pico的涡轮机。将通过安全阀在腔室内进行气压控制的涡轮机功率输出与没有控制的涡轮机功率输出进行比较。与没有控制的情况相比,通过使用压力控制可以观察到功率输出的显着增加。涡轮功率输出的分析考虑了不同的涡轮直径和转速范围。 (C)2016 Elsevier Ltd.保留所有权利。

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