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Cavitation in centrifugal pump with rotating walls of axial inlet device

机译:离心泵中的空化轴向入口装置的旋转壁

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The article deals with the analysis of cavitation processes in the flowing part of the double entry centrifugal pump. The analysis is conducted using numerical modeling of the centrifugal pump operating process in the software environment ANSYS CFX. Two models of the axial inlet device is researched. It is shaped by a cylindrical section and diffuser section in front of the impeller, which includes fairing. The walls of the axial inlet device rotate with the same speed as the pump rotor. The numerical experiment is conducted under the condition of the flow rate change and absolute pressure at the inlet. The analysis shows that the pump has the average statistical cavitation performance. The occurrence of the cavitation in the axial inlet device is after narrowing the cross-section of flow channel and at the beginning of the diffuser section. Additional sudden expansion at the outlet of the axial inlet diffuser section does not affect the cavitation characteristics of the impeller, however, improves cavitation characteristics of the axial inlet device. For considered geometric parameters of the axial inlet device the cavitation in the impeller begins earlier than in the axial inlet device. That is, the considered design of the axial inlet device will not be subjected to destruction at the ensuring operation without cavitation in the impeller.
机译:本文涉及分析双入口离心泵流动部分的空化过程。通过在软件环境ANSYS CFX中使用离心泵操作过程的数值建模进行分析。研究了两种轴向入口装置的模型。它由叶轮前面的圆柱形部分和漫射器部分成形,该叶轮在叶轮前面包括整流罩。轴向入口装置的壁以与泵转子相同的速度旋转。数值实验在流速变化的条件下进行,入口处的绝对压力进行。分析表明,泵具有平均统计空化性能。在缩小流动通道的横截面和漫射器部分的开始之后,轴向入口装置中的空化的发生。轴向漫射器部分的出口处的额外突然膨胀不会影响叶轮的空化特性,但是,改善了轴向入口装置的空化特性。对于考虑轴向入口装置的几何参数,叶轮中的空化比在轴向入口装置中开始。也就是说,轴向入口装置的考虑设计在确保操作中不会被破坏而没有叶轮中的空化。

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