Title of article :
CFD-DEM-based Numerical Simulation of Erosion Characteristic of Multistage Pressure Relief String Regulating Valve
Author/Authors :
Ou ، G. Flow Induced Corrosion Institution - Zhejiang Sci-Tech University , Cao ، X. Flow Induced Corrosion Institution - Zhejiang Sci-Tech University , Wang ، C. Flow Induced Corrosion Institution - Zhejiang Sci-Tech University , Duan ، A. Flow Induced Corrosion Institution - Zhejiang Sci-Tech University , Jin ، H. Key Laboratory of Fluid Transmission Technology of Zhejiang Province - Flow Induced Corrosion Institution - Zhejiang Sci-Tech University
From page :
999
To page :
1015
Abstract :
The regulating valve applied in coal liquefaction systems becomes seriously worn and its service life decreases because of a significant difference in pressure and solid solid–liquid flow. This study proposes a wear wear-resistant multistage pressure relief string string-regulating valve, and examines the characteristics of depressurization of flow and the erosion of its throttle element by using computation al fluid dynamics (CFD) simulations and the discrete element method (DEM) combined with the E/CRC (Erosion/Corrosion erosion model of the WC WC-Co coating. The influence of different sizes of the opening of the valve and varying differences in pressur e on the characteristics of erosion is analyzed. Moreover, properties of collisions between particles (such as the particle impact velocity and mass per second) are used to represent and analyze the characteristics of erosion. The numerical results show th at the cylinder, flat, and bevel of the valve are at high risk of erosion. The characteristics of erosion of the multistage pressure relief string string-regulating valve studied in this paper can provide a reference for optimizing methods of erosion prevention.
Keywords :
Multistage depressurization , Regulating valve , String valve , CFD , DEM , Erosion characteristic , Solid–liquid flow
Journal title :
Journal of Applied Fluid Mechanics (JAFM)
Journal title :
Journal of Applied Fluid Mechanics (JAFM)
Record number :
2727056
Link To Document :
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