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PUMP PERFORMANCE IMPROVEMENT BY RESTRAINING BACK FLOW IN SCREW-TYPE CENTRIFUGAL PUMP

机译:通过限制螺杆式离心泵中的回流来提高泵的性能

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The authors have been investigating the various characteristics of screw-type centrifugal pumps, such as pressure fluctuations in impellers, flow patterns in volute casings, and pump performance in air-water two-phase flow conditions. During these investigations, numerical results of our investigations made it clear that three back flow regions existed in this type of pump. Among these, the back flow from the volute casing toward the impeller outlet was the most influential on the pump performance. Thus the most important factor to achieve higher pump performance was to reduce the influence of this back flow. One simple method was proposed to obtain the restraint of back flow and so as to improve the pump performance. This method was to set up a Ring-like wall at the suction cover casing between the impeller outlet and the volute casing. Its effects on the flow pattern and the pump performance have been discussed and clarified to compare the calculated results with experimental results done under two conditions - namely, one with and one without this Ring-type wall. The influence of wall's height on the pump head was investigated by numerical simulations. In addition, the difference due to the wall's effect was clarified to compare its effects on two kinds of volute casing. From the results obtained it can be said that restraining the back flow of such pumps was very important to achieve higher pump performance. Furthermore, another method was suggested to restrain back-flow effectively. This method was to attach a wall at the trailing edge of impeller. This method was very useful for avoiding the congestion of solids because this wall was smaller than that used in the first method. The influence of these factors on the pump performance was also discussed by comparing simulated calculations with actual experiments.
机译:作者一直在研究螺旋型离心泵的各种特性,例如叶轮中的压力波动,蜗壳中的流型以及气水两相流条件下的泵性能。在这些研究中,我们研究的数值结果清楚地表明,这种类型的泵中存在三个回流区域。其中,从蜗壳到叶轮出口的回流对泵的性能影响最大。因此,获得更高泵性能的最重要因素是减少这种回流的影响。提出了一种简单的方法来抑制回流并提高泵的性能。该方法是在叶轮出口和蜗壳之间的吸气罩壳上设置一个环形壁。讨论并澄清了其对流型和泵性能的影响,以将计算结果与在两种条件下进行的实验结果进行比较-一种是带有这种环形壁的情况,​​另一种是没有这种环形壁的情况。通过数值模拟研究了壁高对泵头的影响。另外,澄清了由于壁的作用引起的差异,以比较其对两种蜗壳的作用。从获得的结果可以说,限制此类泵的回流对于实现更高的泵性能非常重要。此外,提出了另一种有效抑制回流的方法。该方法是在叶轮的后缘安装壁。该方法对于避免固体堵塞非常有用,因为该壁比第一种方法中使用的壁小。通过将模拟计算与实际实验进行比较,还讨论了这些因素对泵性能的影响。

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