重力涡旋水轮机锥形盆涡特性研究

E. Septyaningrum, Sutardi, R. Hantoro
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引用次数: 0

摘要

由于化石燃料的贬值和能源需求的集约化增长,对包括水电在内的替代能源的研究具有吸引力。变流小波的出现是一种很有前途的低水头水力发电技术。GVWT的能量提取依赖于盆地内涡流的形成。通过CFD模拟分析了GVWT流域内涡流的特征,并对实验结果进行了验证。水槽设计对涡高、空气芯直径和水流速度的影响是确定GVWT设计的基本考虑因素。由于靠近出口的盆地截面较小,切向速度和轴向速度随深度的增加而增加。深度每增加10%,切向速度的增加幅度为8 - 26%。无导流板的锥形盆地产生不对称涡流和二次流。导流板有助于形成轴对称涡流和二次流,可以改善锥形盆地的涡流结构。切向速度的最大值在缺口角为19°时得到。因此,建议在GVWT中使用带有偏转板的盆来改善其性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Vortex Characteristic of The Conical Basin for Gravitational Vortex Water Turbine (GVWT)
Due to the fossil fuel depreciation and the intensive growth of energy demand, the research on alternative energy resources is attractive, including hydropower. The emergence of GVWT is a promising technology for low-head hydroelectric power generation. The energy extraction of GVWT depends on the formation of eddies in the basin. The study was conducted to analyze the characteristics of the eddies in the GVWT basin through CFD simulations and validated by experimental results. The impact of basin design on the vortex heigh, the air-core diameter, and the water velocity is presented as the basic consideration in determining the GVWT design. Due to the small basin cross-section near the outlet, the tangential and axial velocities increase with increasing depth. The increase in tangential velocity varies with a value of 8 - 26% for every 10% increase in depth. The conical basin without deflectors produces asymmetrical eddies and secondary flow. The deflector is used to improve the eddies structure in conical basins since it contributes to generating axisymmetric eddies and secondary flows. The highest tangential velocity is obtained at a notch angle of 19°. Therefore, the use of a basin with a deflector in the GVWT is recommended to improve its performance.
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