Numerical Study and Theoretical Comparison of Outlet Hole Geometry for a Gravitational Vortex Turbine

Q1 Earth and Planetary Sciences
Alejandro Ruiz Sánchez, J. S. Río, T. Pujol
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引用次数: 2

Abstract

The gravitational water vortex turbine is an alternative to renewable energies, it transforms the hydrokinetic energy of the rivers into electric energy and it does not require a reservoir. According to studies carried out, the hydraulic efficiency can increase or decrease according to the turbine geometrical configuration. This paper presents a numerical (CFD) and analytical comparison between conical and cylindrical designs for the outlet. The results show a higher performance for conical geometry than the cylindrical tank. The fluid behavior in CFD and analytical studies presents a tangential velocity increase near to air core and outlet hole (similar behavior). The maximum theoretical power generated was 167 W and 150 W for conical and cylindrical design respectively. The differences between geometries of the outlet holes using CFD and analytical models were 11 and 7%, respectively. However, the closest results to the CFD model had different values of 31 and 29% for conical and cylindrical design, respectively. The furthest result regarding the CFD study was 55%. The principal difference is due to tank geometry, the change in discharge zone, as well as the ratio of diameter tank and outlet hole can increase or decrease the tangential velocity and make a stronger and more stable vortex formation. The theoretical power generated is a good parameter to select the height to place the rotor.
重力涡涡轮出口孔几何形状的数值研究与理论比较
重力水涡轮机是一种可再生能源的替代方案,它将河流的水动能转化为电能,而且不需要水库。根据所进行的研究,水力效率会根据涡轮的几何结构而增加或减少。本文对锥形和圆柱形出口设计进行了数值计算和分析比较。结果表明,锥形槽的性能优于圆柱形槽。在CFD和分析研究中流体行为表现为靠近空气芯和出口孔的切向速度增加(类似行为)。锥形和圆柱形设计的最大理论功率分别为167 W和150 W。利用CFD和分析模型计算出的出口孔几何形状的差异分别为11%和7%。然而,最接近CFD模型的结果在锥形和圆柱形设计中分别为31%和29%。CFD研究的最大结果为55%。其主要区别是由于罐体的几何形状、流量区的变化以及罐体直径与出口孔的比值可以增大或减小切向速度,使涡流形成更强、更稳定。产生的理论功率是选择转子放置高度的一个很好的参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Indonesian Journal of Science and Technology
Indonesian Journal of Science and Technology Engineering-Engineering (all)
CiteScore
11.20
自引率
0.00%
发文量
10
审稿时长
16 weeks
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