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Performance evaluation of a drag hydro kinetic turbine for rivers current energy extraction - A case study

机译:河流电流能量提取拖曳水力动力学汽轮机的性能评价 - 以案例研究

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摘要

River current energy is considered as the greenest energy available, as it has enormous energies stored. It is a promising energy source in renewable energy due to the accessibility and availability. The River Nile in Egypt has been selected in this work as the case study for this kind of energy. The process of hydro-kinetic energy conversion utilizes the contained kinetic energy in the river stream which can be extracted by a submerged vertical axis turbine. The main objective of this work is to design and simulate a water current stream energy conversion system as a stand-alone power station for the electric power generation. The generated electric power is intended for rural and domestic applications. CFD is used to simulate and redesign a drag turbine. The numerical analysis indicates that the S shape blade has the maximum power coefficient of 24.6% for a tip speed ratio 0.8 and streamflow velocity 3 m/s. The results indicate that the maximum power coefficient of the S shape and the conventional design are 18% and 12.8% respectively at the tip speed ratio 0.8 and 0.5 m/s. The S shape enhances the turbine performance by 40% compared with the conventional design, especially at low velocity.
机译:河流电流被认为是最逼真的能量,因为它具有巨大的能量。由于可访问性和可用性,它是可再生能源的有希望的能源。埃及的尼罗河在这项工作中被选中是这种能量的案例研究。水力动能转换的过程利用河流中含有的动能,其可以通过浸没的垂直轴涡轮机提取。这项工作的主要目的是设计和模拟水流流能量转换系统作为用于发电的独立电站。所产生的电力适用于农村和国内应用。 CFD用于模拟和重新设计阻力涡轮机。数值分析表明,S形叶片的最大功率系数为24.6%,尖端速度比为0.8和流流速度3m / s。结果表明,S形和常规设计的最大功率系数分别为尖端速度比0.8和0.5m / s的18%和12.8%。与传统设计相比,S形状增强了40%的涡轮机性能,尤其是在低速下。

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