混流式水轮机转轮叶片阻塞作用下的叶片间涡特性

Seung-Jun Kim, Jin-Hyuk Kim, Young-Seok Choi, Yong Cho, Jongwoong Choi
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引用次数: 1

摘要

本文对混流式水轮机在不同流量条件下的叶片间涡特性及转轮的阻塞效应进行了数值分析。涡轮模型显示了不同工况下转轮叶片流道内的不同流动特性,在低流量工况下观察到叶间涡。这种叶片间涡会导致涡轮系统性能降低、振动和不稳定,不利于涡轮系统的平稳运行。前人对不同流道叶片厚度的堵塞效应进行了研究,揭示了在小流量条件下堵塞对水力性能和内部流动特性的影响。因此,混流式水轮机在小流量条件下,阻塞效应可以改变叶片间涡特性。为了研究内部流动和非定常压力特性,进行了三维定常和非定常reynolds -average Navier-Stokes计算。这些叶间涡在靠近转轮轮毂的前后缘被捕获。这些涡区表现为流动分离和停滞流动,而在低流量条件下,阻塞效应有助于降低叶间涡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inter-Blade Vortex Characteristics With the Blockage Effects of Runner Blade in a Francis Hydro Turbine Model
This study presents the numerical analysis on the inter-blade vortex characteristics along with the blockage effects of runner blade in a Francis hydro turbine model with various flow rate conditions. The turbine model showed different flow characteristics in the runner blade passages according to operating conditions, and inter-blade vortex was observed at lower flow rate conditions. This inter-blade vortex can lead to performance reduction, vibration, and instability for smooth operation of turbine systems. The previous study on blockage effects on various runner blade thickness, showed its influence on hydraulic performance and internal flow characteristics at low flow rate conditions. Therefore, the inter-blade vortex characteristics can be altered with the blockage effects at low flow rate conditions in a Francis hydro-turbine. For investigating the internal flow and unsteady pressure characteristics, three-dimensional steady and unsteady Reynolds-averaged Navier-Stokes calculations are performed. These inter-blade vortices were captured at the leading and trailing edges close to the runner hub. These vortex regions showed flow separation and stagnation flow while blockage effects contributed for decreasing the inter-blade vortex at low flow rate conditions.
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