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Numerical Analysis of Impeller-Volute Tongue Interaction and Unsteady Fluid Flow in a Centrifugal Pump

机译:离心泵叶轮型舌舌相互作用和不稳定流体流动的数值分析

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Unsteady flow analysis has been carried out within a centrifugal pump with six twisted blade impeller to study the impeller/volute tongue interaction. The numerical analysis is done by solving the threedimensional RANS codes with standard k-ε two-equations turbulence model. The wall regions are modeled with a scalable loglaw wall function. The numerical simulation is carried out with multiple frames of reference (MFR). Dissimilar tetrahedral mesh for the impeller/volute casing has been used and is connected via Transient Rotor Stator interface. Current investigation will study the unsteady fluid flow interaction between impeller/volute tongue and the casing at various operating point. The results of the numerical analysis are used to predict and visualize the unsteady flow interaction between the impeller and volute casing. From the numerical analysis, it shows that a recirculation zone near to suction-front shroud side just after the leading edge even at design point due to non-tangential inflow condition. The flow within the impeller passage is very smooth and congruent with the curvature of the blade in stream-wise direction. When the flow is discharged into volute casing circumferentially from the impeller exit, the high velocity flow is severely distorted and formed a spiral flow pattern within the volute casing. The axisymmetrical, dual core vortex flow developed inside the volute near the tongue will slowly evolved into non-axisymmetrical, non-equal dual core vortex flow near volute exit in angular flow direction. Near volute tongue region, the impeller/volute tongue strong interaction is observed based on the periodically fluctuating pressure at outlet. The uneven pressure distribution is observed at impeller outlet circumferential position. The existing analysis results showed that the pressure fluctuation periodically is due to the position of impeller blade relative to tongue and the flow field within the volute casing is always unsteady and turbulent.
机译:在具有六个扭曲叶片叶轮的离心泵内进行了不稳定的流量分析,以研究叶轮/蜗壳舌互动。通过用标准K-ε双方程湍流模型求解三维rans码来完成数值分析。墙区域采用可扩展的Loglaw壁功能进行建模。数值模拟与多个参考帧(MFR)进行。已经使用了用于叶轮/蜗壳壳体的异种四面体网,并通过瞬态转子定子界面连接。目前的调查将研究叶轮/蜗壳舌片和各种操作点的壳体之间的不稳定流体流动相互作用。数值分析的结果用于预测和可视化叶轮和蜗壳壳体之间的不稳定流动相互作用。从数值分析中,它表明,即使在设计点,靠近吸入前护罩侧的再循环区域也是由于非切向流入状态的设计点。叶轮通道内的流动非常光滑,并且在流明智方向上具有刀片的曲率。当流动从叶轮出口周向沿周向的蜗壳壳体排出时,高速流动严重扭曲并形成蜗壳内的螺旋流动图案。在舌头附近的蜗壳内开发的轴对称,双芯涡流流动将慢慢地进化成非轴对称,非相等的双芯涡流流动,在角度流动方向上接近蜗壳出口。靠近蜗壳舌区,基于出口处的周期性波动的压力观察叶轮/蜗壳舌强相互作用。在叶轮出口圆周位置观察不均匀的压力分布。现有的分析结果表明,周期性的压力波动是由于叶轮叶片相对于舌片的位置,并且蜗壳内的流场总是不稳定和湍流。

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