An Approximation of Using Vertical-Axis Tidal Turbine for Water Desalination in the Suez Canal Waterway

A. Gharib-Yosry, Rodolfo Espina Valdés, E. Blanco-Marigorta, E. Álvarez-Álvarez
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Abstract

Many countries are suffering from water shortage, especially Egypt, which is considered one of the limited regions in fresh-water resources. Desalination has been proven a feasible and promising technology for supplying potable water. However, the main challenge inhibiting the wider use of desalination technologies is the high economic cost especially due to the energy consumption. The main goal of this research is to provide an approach on the possibility of using vertical-axis turbines to harness the periodical tidal current and the hydrokinetic flow from ships and vessels, which run continuously in the Suez Canal waterway, for a desalination process. The turbine rotor type and the design parameters have been selected carefully looking for self-starting and best performance under low flow velocities with independency of the flow direction. Experimentally, the model has been fabricated using additive manufacturing process, and tested in a water flume under different upstream flow velocities. Power curves have been obtained for each operating condition. Additionally, the non-dimensional tip speed ratio and power co-efficient curve have been characterized. Numerically, an intensive three-dimensional simulation has been carried out in order to obtain a better understanding of the complex hydrodynamic flow phenomena around the turbine rotor.
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垂直轴式潮汐水轮机在苏伊士运河航道海水淡化中的近似应用
许多国家正遭受缺水之苦,特别是埃及,它被认为是淡水资源有限的地区之一。海水淡化已被证明是供应饮用水的可行和有前途的技术。然而,阻碍海水淡化技术广泛使用的主要挑战是高经济成本,特别是由于能源消耗。这项研究的主要目标是提供一种利用垂直轴涡轮机来利用周期性潮汐流和苏伊士运河水道上连续运行的船舶的水动力流的可能性,用于脱盐过程。对涡轮转子的类型和设计参数进行了仔细的选择,以寻求在低流速下与流向无关的自启动和最佳性能。实验方面,采用增材制造工艺制作了该模型,并在不同上游流速的水槽中进行了试验。得到了各工况下的功率曲线。此外,还对无量纲叶尖速比和功率系数曲线进行了表征。数值上,为了更好地理解涡轮转子周围复杂的水动力流动现象,进行了密集的三维模拟。
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