CFDに基づくプロトタイプポンプ水車のかん房性能の数値予測
Yu-Liang Zhang1, Hui-Fan Huang2, Jiang-Bo Tong2
1Zhejiang Key Laboratory of Intelligent Manufacturing for Aerodynamic Equipment, College of Mechanical Engineering, Quzhou University, Quzhou, 324000, China. zhang002@sina.com.
Abstract:
Centrifugal pump as turbine (PAT) is a crucial technology for recovering and utilizing liquid pressure energy, but its cavitation behavior remains insufficiently understood. To investigate the cavitation performance of a specific pump operating as turbine, this study systematically analyzed its behavior across varying flow rates using computational fluid dynamics (CFD) based on the Schnerr-Sauer cavitation model. The results show that the incipient and critical cavitation margins reach their minimum values at the optimal flow rate, closely matching those under low flow conditions. When flow rate exceeds the optimal point, both margins increase significantly. At optimal and high flow rates, the cavity volume inside the impeller first increases and then decreases as cavitation evolves, peaking at the critical cavitation point. The impeller cavity volume grows with increasing flow rate, while draft tube cavity volumes continuously expand as cavitation progresses.
関連する概念動画
Typical Model Studies
Design Example: Creating a Hydraulic Model of a Dam Spillway
Application of the Energy Equation
Conservation of Energy in Control Volume
For steady flow systems, the time derivative of the stored energy becomes zero since there is no energy accumulation within the control volume. This simplifies the energy equation to:
Modeling and Similitude
Design Example: Designing a Residential Plumbing System


