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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Unsteady flow characteristics and cavitation prediction in the double-suction centrifugal pump using a novel approach
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Unsteady flow characteristics and cavitation prediction in the double-suction centrifugal pump using a novel approach

机译:采用新方法双吸离离心泵的不稳定流动特性和空化预测

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The recent advances in centrifugal pump design do not only require a better suction performance but also there have been attempts to reduce design time at a lower cost. The traditional trial-and-error optimization design method, however, depends on the designer's experience, which requires longer cycles. This is because the computational process of calculating the net positive suction head required (NPSHr) involves several calculation steps and this consumes a lot of computational time. An investigation was therefore carried out to test a novel NPSHr prediction method in a double-suction centrifugal pump using unsteady numerical simulations. In the new approach, a new boundary pair was introduced and an algorithm was used to estimate a good value for a static pressure value that correlates to a 3% drop in pump head to determine the critical cavitation point. Experiments were conducted to validate the hydraulic performance and the cavitation model. The NPSHr and the characteristic “sudden” head-drop were very well predicted by the novel approach in only three simulation steps. The internal flow analysis showed that for 0.6 Q _( d ), the flow around the volute tongue was uneven at NPSH = 10.06 m, inducing flow separation and recirculation at the tongue region. Attached cavities were also observed around the suction ring in the spiral suction domain. The pressure fluctuations were analyzed also and the dominant frequency at the pump outlet and tongue region was the blade passing frequency. Consequently, the novel approach proved very robust and efficient in NPSHr prediction and would be a good alternative to shorten simulation time during cavitation optimization design process in centrifugal pumps.
机译:离心泵设计的最近进步不仅需要更好的吸入性能,而且还试图以较低的成本降低设计时间。然而,传统的试用和错误优化设计方法取决于设计师的体验,这需要更长的循环。这是因为计算所需的净正抽吸头的计算过程(NPSHR)涉及几个计算步骤,这消耗了大量的计算时间。因此,在使用不稳定的数值模拟中进行了一种在双吸离心泵中测试新的NPSHR预测方法。在新方法中,引入了一种新的边界对,并且使用算法来估计静态压力值的良好值,该静压值与泵头中的3%下降相关以确定临界空化点。进行实验以验证液压性能和空化模型。 NPSHR和特征“突然”头滴在仅三种模拟步骤中的新方法非常良好地预测。内部流动分析表明,对于0.6 Q _(d),蜗壳舌周围的流动在NPSH =10.06μm处不均匀,在舌区诱导流动分离和再循环。还在螺旋抽吸结构域中的吸入环周围观察到附着的空腔。还分析了压力波动,泵出口和舌区的主频率是叶片通过频率。因此,新颖的方法在NPSHR预测中证明了非常稳健和有效的,并且是在离心泵中缩短空化优化设计过程中的仿真时间的良好替代方案。

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