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Closed valve flow field investigation using computational fluid dynamics

机译:使用计算流体动力学的闭阀流场研究

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摘要

The flow field of a centrifugal pump operating at closed valve was investigated using Computational Fluid Dynamics (CFD). The rotor stator interactions were shown to directly link to the developed flow regime. The impeller flow regime was divided into two distinct areas. The upper proportion at the discharge vanes contained a vortex, the size and motion of which was influenced by the vane number ratio of stator to rotor vanes and the position of the rotor vanes with respect to the stator vanes The lower proportion of the impeller was filled with a strong flow reversal, which developed from the impeller hub and traversed to the shroud side spiralling out of the impeller eye into the suction duct. The suction duct flow regime contained a helically spiralling outflow near to the duct wall and a spiralling inflow core driven by the viscous forces imposed by the outflow regime. The pump casing showed a non-linear pressure development around the volute influenced by the stationary collector. The collector passages, which connect to the pump discharge, experienced pressure pulsations at the vane passing frequency.
机译:使用计算流体动力学(CFD)研究了在关闭阀门下运行的离心泵的流场。转子定子之间的相互作用被证明直接关系到已发展的流动状态。叶轮流动方式分为两个不同的区域。排气叶片的上部部分包含一个涡流,其大小和运动受定子与转子叶片的叶片数量比以及转子叶片相对于定子叶片的位置的影响。叶轮的下部部分被填充从叶轮轮毂形成并逆流到护罩侧的强力逆流螺旋形地从叶轮眼中旋入吸气管。吸入管道的流动状态包含靠近管道壁的螺旋状螺旋状流出物和由流出状态所施加的粘性力驱动的螺旋状流入芯。泵壳在受固定收集器影响的蜗壳周围显示出非线性压力发展。连接到泵出口的收集器通道在叶片通过频率处经历压力脉动。

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