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首页> 外文期刊>Mathematical Problems in Engineering >Numerical Research on Flow Characteristics around a Hydraulic Turbine Runner at Small Opening of Cylindrical Valve
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Numerical Research on Flow Characteristics around a Hydraulic Turbine Runner at Small Opening of Cylindrical Valve

机译:圆柱阀小开度时水轮机转轮流动特性的数值研究。

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We use the continuity equation and the Reynolds averaged Navier-Stokes equations to study the flow-pattern characteristics around a turbine runner for the small-opening cylindrical valve of a hydraulic turbine. For closure, we adopt the renormalization-group k-ε two-equation turbulence model and use the computational fluid dynamics (CFD) software FLUENT to numerically simulate the three-dimensional unsteady turbulent flow through the entire passage of the hydraulic turbine. The results show that a low-pressure zone develops around the runner blades when the cylindrical valve is closed in a small opening; cavitation occurs at the blades, and a vortex appears at the outlet of the runner. As the cylindrical valve is gradually closed, the flow velocity over the runner area increases, and the pressure gradient becomes more significant as the discharge decreases. In addition, the fluid flow velocity is relatively high between the lower end of the cylindrical valve and the base, so that a high-velocity jet is easily induced. The calculation and analysis provide a theoretical basis for improving the performance of cylindrical-valve operating systems.
机译:我们使用连续性方程和雷诺平均Navier-Stokes方程来研究水轮机小开度圆柱阀的水轮机流道特性。对于闭合,我们采用重归一化群k-ε两方程湍流模型,并使用计算流体力学(CFD)软件FLUENT数值模拟了整个水轮机通道中的三维非定常湍流。结果表明,当圆柱阀在一个小开口中关闭时,流道叶片周围会形成一个低压区。在叶片上出现气蚀,在流道的出口出现涡流。随着圆柱形阀逐渐关闭,流道面积上的流速增加,并且随着排出量的减少,压力梯度会变得更大。另外,在圆筒形阀的下端与基部之间的流体流速相对较高,从而容易引起高速射流。计算和分析为提高圆柱阀操作系统的性能提供了理论基础。

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