Hydrodynamic Performance and Cavitation Characteristics of an Integrated Pump-Gate
作者:Yiming Li, Zhengwen Tang, Qiqing Chen, Deyang Liu, Jinxin Zou, David Yang, Xiangrong Luo, Yun Long · 发表于:Fluids · 年份:2026 · DOI:10.3390/fluids11020041 · 研究领域:Hydraulic flow and structures、Cavitation Phenomena in Pumps、Fluid dynamics and aerodynamics studies
The integrated pump-gate is a hydraulic facility that integrates a pumping station and a gate, playing a vital role in urban drainage systems, flood control, and other scenarios. Although integrated pump-gates are widely used, their internal flow presents different forms depending on the application scenarios, such as backflow, vortices, and cavitation. These effects markedly influence the pump’s hydraulic performance, operational stability, and overall reliability. This study investigates the cavitation characteristics and internal flow fields within the complex geometry of the integrated pump-gate and numerically simulates the cavitation phenomenon using the SST turbulence model. Specifically, the influence of the impeller, guide vanes, and structural supports on the cavitation performance and internal flow state was analyzed. The results show that the geometric characteristics of the impeller’s leading edge significantly influence the cavitation structure. Regarding cavitation performance, NPSHc was determined to be 5.3 m. At the leading edge of the guide vanes, cavitation usually occurs at the axial diffusion position of the flow channel, and the degree of cavitation is affected by the relative position of the guide vanes and the impeller blades. The structural supports and protrusions significantly affect the vortex structures in the flow field, with protrusion-induced vortex clusters dominating the guide vane region.