Author:
Zhou Ling,Bai Ling,Li Wei,Shi Weidong,Wang Chuan
Abstract
Purpose
The purpose of this study is to validate the different turbulence models using in the numerical simulation of centrifugal pump diffuser. Computational fluid dynamics (CFD) has become the main method to study the pump inner flow patterns. It is important to understand the differences and features of the different turbulence models used in turbomachinery.
Design/methodology/approach
The velocity flow fields in a compact return diffuser under different flow conditions are studied and compared between CFD and particle image velocimetry (PIV) measurements. Three turbulence models are used to solve the steady flow field using high-quality fine structured grids, including shear stress transport (SST) k-w model, detached-eddy simulation (DES) model and SST k-w model with low-Re corrections.
Findings
SST k-w model with low-Re correction gives better results compared to DES and SST k-w model, and gives a good predication about the vortex core position under strong part-loading conditions.
Originality/value
A special test rig is designed to carry out the 2D PIV measurements under high rotating speed of 2850 r/min, and the PIV results are used to validate the CFD results.
Subject
Computational Theory and Mathematics,Computer Science Applications,General Engineering,Software
Reference17 articles.
1. Numerical simulation and uncertainty estimation in a deep well centrifugal pump;IOP Conference Series: Materials Science and Engineering,2013
2. Flow analysis in a pump diffuser – part 1: LDA and PTV measurements of the unsteady flow;Journal of Turbomachinery - Trans ASME,1997
3. Unsteady flow visualization at part-load conditions of a radial diffuser pump: by PIV and CFD;Journal of Visualization,2009
4. Investigation of periodically unsteady flow in a radial pump by CFD simulations and LDV measurements;Journal of Turbomachinery – Trans ASME,2011
5. Pump research and development: past, present, and future - an American perspective;Journal of Fluids Engineering – Trans ASME,1999
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