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首页> 外文期刊>American Journal of Mechanical and Industrial Engineering >Optimizing Centrifugal Pump Performance by Different Blade Configuration Patterns
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Optimizing Centrifugal Pump Performance by Different Blade Configuration Patterns

机译:通过不同叶片配置模式优化离心泵性能

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Impeller blades configuration is directly affecting the performance of the pump. Using splitter blades are one of the techniques that used to improve hydraulic performance. These modifications in the blades design are greatly affecting the dynamic performance of the pump. Splitting the blade changes its center of mass and makes it out of alignment with the center of rotation leading to eccentricity problem. The present research elucidates the effect of changing the blades configurations on both of hydraulic and dynamic performances. The impeller under study was designed such that, its shape could be changed using the splitting technique. The conventional blade could be defined as a baseline reference. Moreover, three additional configurations resulted from splitting impeller blades is hydraulically and dynamically investigated. The changes in flow rates, heads, and vibrations associated with each case were recorded and compared with the conventional case. Therefore the main results were clearly indicated as, the highest value of the pump maximum efficiency recorded for 3rd configuration (as the middle and the outer parts staggered at 24° and 48° backward), where the lowest value for 1st configuration (as the inner part of the blade staggered at 24° forward). On the other hand, the results showed that, splitting the impeller blade's leads to uneven distribution of masses around the impeller thus leading to unbalance problem. Moreover, Vibration increased as the extent of blades locations deviations increased. Therefore, to avoid unbalance problem the splitting the impeller blades have to be in urgently and narrowest uses, such as to decrease cavitation occurrence, this may be the important recommendation.
机译:叶轮叶片的配置直接影响泵的性能。使用分离叶片是用于改善液压性能的技术之一。叶片设计的这些修改极大地影响了泵的动态性能。分裂叶片会改变其质心,使其与旋转中心不对齐,从而导致偏心率问题。本研究阐明了改变叶片配置对液压性能和动态性能的影响。研究中的叶轮经过设计,可以使用分流技术改变其形状。可以将常规刀片定义为基准参考。此外,液压和动态研究了由分裂叶轮叶片产生的三种附加构造。记录每种情况下的流量,扬程和振动的变化,并将其与常规情况进行比较。因此,主要结果清楚地表明为:第三种配置记录的泵最大效率的最大值(中间部分和外部部分在向后24°和48°处错开),而第一种配置记录的最小值(作为内部叶片的一部分向前错开24°)。另一方面,结果表明,将叶轮叶片分开会导致叶轮周围的质量分布不均,从而导致不平衡问题。此外,随着叶片位置偏差程度的增加,振动也会增加。因此,为了避免不平衡问题,必须紧急且最窄地使用叶轮叶片,以减少气蚀的发生,这可能是重要的建议。

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