离心泵蜗壳内非定常流动特性

王松林;谭 磊;王玉川

振动与冲击 ›› 2014, Vol. 33 ›› Issue (11) : 43-48.

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PDF(2244 KB)
振动与冲击 ›› 2014, Vol. 33 ›› Issue (11) : 43-48.
论文

离心泵蜗壳内非定常流动特性

  • 王松林1,谭 磊2,王玉川2
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Characteristics of unsteady flow in centrifugal pump volute

  • WANG Song-lin1 TAN Lei2 WANG Yu-chuan2
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摘要

基于修正的RNG k-ε湍流模型和输运方程空化模型,对离心泵内部非空化和空化的非定常流动进行了数值模拟,计算结果与试验结果吻合较好,验证了数值模型和计算方法的准确性。在离心泵蜗壳内布置了5个监测点,分析了蜗壳内非空化和空化工况时流动特性。结果表明:离心泵非空化和临界空化工况下,蜗壳内压力脉动的主频为叶片通过频率145 Hz或290 Hz,而在充分发展空化工况下,压力脉动的主频非常低,可能原因是空泡剧烈的脱落及溃灭引起的。三种工况下,离心泵蜗壳第2断面附近的压力脉动最大幅值均远大于其它监测点,原因是此处存在较强的二次流,出现了两个非对称反向旋涡,两个旋涡的涡心位置、形状、强度随时间不断变化,对流动产生较强扰动,诱发强烈的压力脉动。

Abstract

The unsteady flow in a centrifugal pump is numerically simulated by using the combination of modified RNG k-ε turbulence model and transport equation cavitation model. The agreement between the experimental and the numerical values is satisfactory, which demonstrates that the numerical model and calculation method can accurately predict the cavitation flow in centrifugal pump. The flow characteristics in pump volute without and with cavitation are analyzed by setting 5 monitor points in the volute. The dominant frequencies of pressure fluctuation in volute at operating conditions of non-cavitaion and critical cavitiaon are the Blade Pass Frequency of 145 HZ or 290 HZ. However, the dominant frequency of pressure fluctuation at developed cavitation condition is very low due to the violent shedding and collapse of bubbles in pump. For three operating conditions, the maximum amplitude of pressure fluctuation at the second section of volute is larger than that at other sections. The possible reason is that there is a strong second flow near this section induced by a pair of counter-rotating vortex, the location, shape and strength of which are changing with time. This changing vortex disturbs the flow in the second section and leads to strong pressure fluctuations.

关键词

离心泵 / 蜗壳 / 非定常 / 流动特性

Key words

Centrifugal pump / Volute / Unsteady / Flow characteristics

引用本文

导出引用
王松林;谭 磊;王玉川. 离心泵蜗壳内非定常流动特性[J]. 振动与冲击, 2014, 33(11): 43-48
WANG Song-lin TAN Lei WANG Yu-chuan. Characteristics of unsteady flow in centrifugal pump volute[J]. Journal of Vibration and Shock, 2014, 33(11): 43-48

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