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Rotating Turbulent Flow Simulation with LES and Vreman Subgrid-Scale Models in Complex Geometries

机译:LES和Vreman子网格尺度模型在复杂几何中的旋转湍流模拟

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摘要

The large eddy simulation (LES) method based on Vreman subgrid-scalemodel and SIMPIEC algorithm were applied to accurately capture the flowing character in Francis turbine passage under the small opening condition. The methodology proposed is effective to understand the flow structure well. It overcomes the limitation of eddy-viscosity model which is excessive, dissipative. Distributions of pressure, velocity, and vorticity as well as some special flow structure in guide vane near-wall zones and blade passage were gained. The results show that the tangential velocity component of fluid has absolute superiority under small opening condition. This situation aggravates the impact between the wake vortices that shed from guide vanes. The critical influence on the balance of unit by spiral vortex in blade passage and the nonuniform flow around guide vane, combined with the transmitting of stress wave, has been confirmed.
机译:运用基于Vreman子网格模型和SIMPIEC算法的大涡模拟(LES)方法,在小开度条件下准确地捕获了混流式水轮机通道中的流动特性。所提出的方法有效地很好地理解了流动结构。它克服了涡流-粘度模型的过度,耗散的局限性。获得了导叶近壁区域和叶片通道中压力,速度和涡度的分布以及一些特殊的流动结构。结果表明,在小开度条件下,流体的切向速度分量具有绝对优势。这种情况加剧了从导向叶片脱落的尾流涡流之间的影响。已经确认了叶片通道中的涡旋涡旋和导向叶片周围的不均匀流动对应力平衡的影响,对单元的平衡产生了至关重要的影响。

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