Unsteady Flow and Structural Behaviors of Centrifugal Pump under Cavitation Conditions

被引:1
|
作者
Denghao Wu [1 ,2 ]
Yun Ren [2 ]
Jiegang Mou [1 ]
Yunqing Gu [1 ]
Lanfang Jiang [2 ]
机构
[1] College of Mechanical Engineering, Zhejiang University of Technology
[2] Zhijiang College, Zhejiang University of Technology
基金
中国博士后科学基金; 中国国家自然科学基金;
关键词
Centrifugal pump; Cavitation; Unsteady flow; Structural behaviors; Fluid-structure interaction;
D O I
暂无
中图分类号
TH311 [离心泵];
学科分类号
080704 ;
摘要
Cavitation has a significant e ect on the flow fields and structural behaviors of a centrifugal pump. In this study, the unsteady flow and structural behaviors of a centrifugal pump are investigated numerically under di erent cavitation conditions. A strong two-way coupling fluid-structure interaction simulation is applied to obtain interior views of the e ects of cavitating bubbles on the flow and structural dynamics of a pump. The renormalization-group k-ε turbulence model and the Zwart–Gerbe–Belamri cavitation model are solved for the fluid side, while a transient structural dynamic analysis is employed for the structure side. The di erent cavitation states are mapped in the head-net positive suction head(H-NPSH) curves and flow field features inside the impeller are fully revealed. Results indicate that cavitating bubbles grow and expand rapidly with decreasing NPSH. In addition, the pressure fluctuations, both in the impeller and volute, are quantitatively analyzed and associated with the cavitation states. It is shown that influence of the cavitation on the flow field is critical, specifically in the super-cavitation state. The e ect of cavitation on the unsteady radial force and blade loads is also discussed. The results indicate that the averaged radial force increased from 8.5 N to 54.4 N in the transition progress from an onset cavitation state to a super-cavitation state. Furthermore, the structural behaviors, including blade deformation, stress, and natural frequencies, corresponding to the cavitation states are discussed. A large volume of cavitating bubbles weakens the fluid forces on the blade and decreases the natural frequencies of the rotor system. This study could enhance the understanding of the e ects of cavitation on pump flow and structural behaviors.
引用
收藏
页码:127 / 141
页数:15
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