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Information Journal Paper

Title

Modeling of Erosion Wear of Sand Water Slurry Flow through Pipe Bend using CFD

Pages

  679-687

Keywords

Computational Fluid Dynamics (CFD) 
Discrete Phase Model (DPM) 

Abstract

 In the present study, Erosion wear of a 90o Pipe bend has been investigated using the Computational fluid dynamics code FLUENT. Solid particles were tracked to evaluate the erosion rate along with k-ɛ turbulent model for continuous/fluid phase flow field. Spherical shaped sand particles of size 183 μ m and 277 μ m of density 2631 kg/m3 are injected from the inlet surface at velocity ranging from 0. 5 to 8 ms-1 at two different concentrations. By considering the interaction between solid-liquid, effect of velocity, particle size and concentration were studied. Erosion wear was increased exponential with velocity, particles size and concentrations. Predicted results with CFD have revealed well in agreement with experimental results. The magnitude and location of maximum Erosion wear were more severe in bend rather than the straight pipe.

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    APA: Copy

    SINGH, V., KUMAR, S., & Mohapatra, S.K.. (2019). Modeling of Erosion Wear of Sand Water Slurry Flow through Pipe Bend using CFD. JOURNAL OF APPLIED FLUID MECHANICS (JAFM), 12(3), 679-687. SID. https://sid.ir/paper/307925/en

    Vancouver: Copy

    SINGH V., KUMAR S., Mohapatra S.K.. Modeling of Erosion Wear of Sand Water Slurry Flow through Pipe Bend using CFD. JOURNAL OF APPLIED FLUID MECHANICS (JAFM)[Internet]. 2019;12(3):679-687. Available from: https://sid.ir/paper/307925/en

    IEEE: Copy

    V. SINGH, S. KUMAR, and S.K. Mohapatra, “Modeling of Erosion Wear of Sand Water Slurry Flow through Pipe Bend using CFD,” JOURNAL OF APPLIED FLUID MECHANICS (JAFM), vol. 12, no. 3, pp. 679–687, 2019, [Online]. Available: https://sid.ir/paper/307925/en

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