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Fluid Mechanics Analysis and Effect of Splitter Blades on the Characteristics of High-Speed Centrifugal Pump

机译:分离叶片对高速离心泵特性的流体力学分析及其影响

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摘要

Due to its single-stage high head, compact structure, convenient maintenance, low cost and high reliability, the high-speed centrifugal pump has been widely used in refining, petrochemical, chemical industry, and aerospace engineering fields. However, as the speed increases, the increasingly high demand for stability is showing and cavitation characteristics of the high-speed centrifugal pump is emerging. Reducing the mechanical vibration, hydraulic losses and improving the pressure distribution of the high-speed pump have become one of the main research fields for high-speed pumps. Three types of splitter blades were designed in this paper. Numerical simulations of the 3D steady flow in the high-speed pump have been carried out by using the software ANSYS CFX 12.0 and the comparative analysis of the velocity, pressure distributions and fluid mechanics in the high-speed pump under three different flow conditions were also carried out, Respectively. The effects of splitter blades on the high-speed pump performance were studied by analyzing both its inner flow field and hydraulic performance. The calculated H-Q curve of the high-speed pump was compared with the test results, and they agreed well with each other. The relative error of head at design conditions was lower than that at the non-design conditions.
机译:由于其单级高头,结构紧凑,维护方便,成本低,可靠性高,高速离心泵已广泛应用于精炼,石化,化学工业和航空航天工程领域。然而,随着速度的增加,对稳定性的越来越高的要求显示出高速离心泵的空化特性是出现的。降低机械振动,液压损耗和提高高速泵的压力分布已成为高速泵的主要研究领域之一。本文设计了三种分流刀片。通过使用软件ANSYS CFX 12.0进行了高速泵中的3D稳定流量的数值模拟,以及在三种不同流动条件下的高速泵的速度,压力分布和流体力学的比较分析也是如此分别进行。通过分析其内部流场和液压性能,研究了分离器叶片对高速泵性能的影响。将计算出的高速泵的H-Q曲线与测试结果进行比较,并且它们彼此相同。设计条件下头部的相对误差低于非设计条件。

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