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Effects of radial diffuser hydraulic design on a double-suction centrifugal pump

机译:径向扩散器液压设计对双吸离心泵的影响

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In order to study effects of radial diffuser on hydraulic performance of crude oil pump, the steady CFD numerical method is applied and one large double-suction oil pump running in long-distance pipeline is considered. The research focuses on analysing the influence of its diffuser vane profile on hydraulic performance of oil pump. The four different types of cylindrical vane have been designed by in-house codes mainly including double arcs (DA), triple arcs (TA), equiangular spiral line (ES) and linear variable angle spiral line (LVS). During design process diffuser vane angles at inlet and outlet are tentatively given within a certain range and then the wrapping angle of the four types of diffuser vanes can be calculated automatically. Under the given inlet and outlet angles, the linear variable angle spiral line profile has the biggest wrapping angle and profile length which is good to delay channel diffusion but bring more friction hydraulic loss. Finally the vane camber line is thickened at the certain uniform thickness distribution and the 3D diffuser models are generated. The whole flow passage of oil pump with different types of diffusers under various flow rate conditions are numerically simulated based on RNG κ-ε turbulent model and SIMPLEC algorithm. The numerical results show that different types of diffusers can bring about great difference on the hydraulic performance of oil pump, of which the ES profile diffuser with its proper setting angle shows the best hydraulic performance and its inner flow field is improved obviously. Compared with the head data from model sample, all designed diffusers can make a certain improvement on head characteristic. At the large flow rate conditions the hydraulic efficiency increases obviously and the best efficiency point shift to the large flow rate range. The ES profile diffuser embodies the better advantages on pump performance which can be -explained theoretically that the diffuser actually acts as a diffusion device and is good to transform the dynamic energy to pressure energy. Then through the hydraulic loss analysis of each pump component for all diffusers, it shows that the impeller takes up the biggest part of the whole loss about 8.19% averagely, the radial diffuser about 3.70% and the volute about 1.65%. The hydraulic loss of impeller is dominant at the large flow rate while the radial diffuser is at the small flow rate. Among all diffusers, the ES profile diffuser generates the least loss and combined to the distribution of velocity vector and turbulent kinetic energy for two kinds of diffusers it also shows that ES profile is fit to apply in radial diffuser. This research can offer a significant reference for the radial diffuser hydraulic design of such centrifugal pumps.
机译:为了研究径向扩散器对原油泵水力性能的影响,施加稳定的CFD数值方法,考虑了长距离管道运行的一个大型双吸油泵。该研究侧重于分析其扩散器叶片轮廓对油泵水力性能的影响。通过内部码设计了四种不同类型的圆柱形叶片,主要包括双弧(DA),三弧(TA),等态螺旋线(ES)和线性可变角螺旋线(LV)。在设计过程期间,入口和出口处的漫射器叶片在一定范围内给出,然后可以自动计算四种类型的漫射器叶片的包裹角。在给定的入口和出口角下,线性可变角螺旋线轮廓具有最大的包装角度和曲线长度,这是良好的延迟通道扩散,而是带来更多的摩擦力损耗。最后,在某些均匀厚度分布处,叶片弧形线在某些均匀厚度分布中增厚,产生3D扩散器模型。基于RNGκ-ε湍流模型和Simplec算法,在各种流量条件下具有不同类型扩散器的油泵的整个流动通道。数值结果表明,不同类型的扩散器可以对油泵的液压性能带来巨大差异,其中ES轮廓扩散器具有适当的设定角度表示最佳的液压性能,其内部流场明显提高。与来自模型样品的头部数据相比,所有设计的扩散器都可以对头部特性进行一定的改进。在大的流量条件下,液压效率显然增加,最佳效率点转移到大的流速范围。 ES配置文件漫射器体现了对泵性能的更好优点,从理论上可以大学上阐述扩散器实际上充当扩散装置,并且良好地将动态能量变换为压力。然后通过对所有扩散器每个泵组件的水力损失分析,它示出了叶轮占用大约8.19%的全部损失的最大的部分平均,约3.70%的径向扩散器和大约1.65%的蜗壳。叶轮的液压损耗以大的流速主导,而径向扩散器处于小的流速。在所有扩散器中,ES轮廓漫射器产生最小损耗并组合到速度向量和湍流动能的分布,两种扩散器也表示ES轮廓适合施加在径向扩散器中。该研究可以为这种离心泵的径向扩散器液压设计提供重要的参考。

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