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INFLUENCE OF VANE NUMBER ON THE PERFORMANCE OF AXIAL-FLOW PUMP UNDER LOW-FLOW-RATE CONDITIONS

机译:叶片号对低流量条件下轴流泵性能的影响

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In order to further probe the relations between hydraulic features and instantaneous vibration of impeller pump, an axial flow pump designed with different combination schemes of rotor and stator is numerically investigated. Vane numbers of 5, 7 and 9 are separately adopted to match the same impeller with 4 blades. Attentions are paid on the pump's performance under low flow rates. Saddle-shaped performance curves are proved during the three pumps' operation with the variation of flow rate. With pre-defined non-dimensional parameters, distributions of axial velocity near the impeller and vane are described. Pressure waves and wake in the region between impeller and vane influence significantly the turbulent flow patterns and energy dissipation. Typical frequencies achieved through fast Fourier transformation of fluctuating pressures also indicate that the emergence of low-frequency components and energy dissipation in the rotor-stator interaction (RSI) region arouse more non-deterministic factors of hydraulic excitation.
机译:为了进一步探测叶轮泵的液压特征与瞬时振动的关系,在数值上研究了具有转子和定子的不同组合方案的轴流泵。分别采用5,7和9的叶片数以匹配与4叶片的相同叶轮。在低流量速率下泵的性能支付了关注。在三个泵的操作期间证明了鞍形性能曲线,其流速的变化变化。利用预定义的非尺寸参数,描述了叶轮和叶片附近的轴向速度的分布。压力波和叶轮和叶片之间的区域中的唤醒显着影响湍流模式和能量耗散。通过快速傅里叶变换实现的波动压力实现的典型频率还表明转子 - 定子相互作用(RSI)区域的低频分量和能量耗散的出现引起了液压激励的更非确定性因素。

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