Numerical study of turbulence model effect on solid particle erosion in gaseous flow

Author:

Pozhidaev A.,Kozhevnikov G.,Strokach E.

Publisher

AIP Publishing

Reference20 articles.

1. Application and experimental validation of a computational fluid dynamics (CFD)-based erosion prediction model in elbows and plugged tees

2. Mills D. Pneumatic conveying design guide. – Butterworth-Heinemann, 2013.

3. Hadžiahmetovic H. et al. Computational fluid dynamics (CFD) based erosion prediction model in elbows //Tehnicki vjesnik. – 2014. – T. 21. – No. 2. – C. 275-28233

4. Farokhipour A. et al. Numerical modeling of sand particle erosion at return bends in gas-particle two-phase flow //Scientia Iranica. – 2018. – T. 25. – No. 6: Special Issue Dedicated to Professor Goodarz Ahmadi. – C. 3231-3242.

5. Zhang Y. et al. Comparison of computed and measured particle velocities and erosion in water and air flows //Wear. – 2007. – T. 263. – No. 1-6. – C. 330-338.

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