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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Numerical investigation on the unstable flow at off-design condition in a mixed-flow pump
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Numerical investigation on the unstable flow at off-design condition in a mixed-flow pump

机译:混流泵非设计工况不稳定流量的数值研究

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摘要

The mixed-flow pump is wildly used in industrial and agricultural fields, and the requirements for its stability become more and more restricted with the improvement of the capacities. When the pump is operated under part-loading conditions, unstable characteristic like rotating stall happens and brings intensive vibration and noise. To reveal the internal unstable flow characteristics in mixed-flow pump, unsteady numerical simulation is conducted under different flow rates in the current research. The secondary flow and the vortex induced by the unsteady flow in the pump, which vary with the change of the flow rate, are analyzed according to the simulation results. Pressure fluctuation in different parts of the impeller is numerically predicted and correlated to the rotating stall propagation process. With the reduction of the flow discharge, a critical flow rate (0.6 Q(des) in the current model pump) is found related to the rotating stall inception. Unstable vortex structure is found in part of the flow passages of the impeller under the stall inception stage; 0.56 Q(des) is the flow rate related to the deep rotating stall under which stable stall vortexes are found in each flow passage of the impeller. Three types of pressure fluctuation characteristics representing different flow field pattern in the impeller are found. When the pump is working at designed flow rate, the pressure fluctuation is regular with the dominant frequency being the rotation frequency f(s) of the rotor. At the stall inception condition, when the stall core appears in the flow passages of the impeller in turn, the amplitude of the pressure fluctuation is increased and the dominant frequency is changed to a low-frequency signal. When the flow rate is reduced below deep stall condition, owning to the reflux from the guide vane and the intensive rotor-stator interaction, the blade passing frequency of the guide vane f(b2) becomes the dominant frequency. Finally, unsteady characteristics of the flow field under stall inception condition are analyzed to demonstrate the propagation process of the rotating stall. The stall vortex is found to propagate from the stalled flow passage to the next, through the tip area of the blade leading edge. During the propagation process, the first vortex shrinks and disappears gradually, while the second vortex grows continuously, and the third vortex shows up at the vanishment of the first stall vortex. This research provides detailed information for the unstable flow especially related to rotating stall evolution with the variation of the operating flow rate of the mixed-flow pump with guide vane.
机译:混流泵广泛用于工业和农业领域,并且随着容量的提高,对其稳定性的要求越来越严格。当泵在部分负载条件下运行时,会发生诸如旋转失速之类的不稳定特性,并带来强烈的振动和噪声。为了揭示混流泵内部的不稳定流动特性,目前在不同流量下进行了非稳态数值模拟。根据仿真结果分析了泵内非定常流动引起的二次流和涡流,它们随流量的变化而变化。对叶轮不同部位的压力波动进行数值预测,并将其与旋转失速传播过程相关联。随着流量的减少,发现与旋转失速开始有关的临界流量(当前型号泵中为0.6 Q(des))。在失速开始阶段,在叶轮的部分流道中发现不稳定的涡流结构。 0.56 Q(des)是与深旋转失速相关的流量,在该深度失速下,在叶轮的每个流道中都可以找到稳定的失速涡流。发现了代表叶轮中不同流场模式的三种类型的压力波动特性。当泵以设计的流量工作时,压力波动是规则的,其主要频率是转子的旋转频率f(s)。在失速开始状态下,当失速芯依次出现在叶轮的流道中时,压力波动的幅度增大,并且主频率变为低频信号。当流速降低到深度失速条件以下时,由于来自导向叶片的回流和强烈的转子-定子相互作用,导向叶片的叶片通过频率f(b2)成为主导频率。最后,分析了失速开始条件下流场的非稳态特征,以证明旋转失速的传播过程。发现失速涡流通过叶片前缘的尖端区域从失速的流道传播到下一个。在传播过程中,第一个涡旋逐渐收缩并消失,而第二个涡旋则不断增长,而第三个涡旋则在第一个失速涡旋消失时出现。该研究为不稳定流量提供了详细的信息,特别是与带有导向叶片的混流泵的工作流量的变化有关的旋转失速演变。

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