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Investigating Non-Newtonian Fluid Behavior in Hydrocyclones Via Computational Fluid Dynamics

📅 May 10, 2024 👤 Raj Shekhar, Abir Chakravorty 📖 International Journal of Innovative Science and Research Technology (IJISRT) 📊 958 citations

🤖 Plain-English Summary

Expert researchers examine complex patterns of pressure, viscosity, and velocity in a CFD study of viscoelastic food inside hydrocyclones to obtain a detailed grasp of particle behavior and fluid dynamics. Additionally, they investigate how different operating parameters, such rotational speed and flow rate, affect how well the hydrocyclone handles viscoelastic food items.

🔑 Key Findings

  • Velocity profiles show how fluids and particles flow through the hydrocyclone in complex ways, while pressure distributions show where high and low pressure is found, regions that are critical for maximizing separation efficiency.
  • Additionally, the analysis of viscosity fluctuations clarifies the intricate relationship between fluid rheology and flow dynamics, providing information on how food's viscoelastic characteristics affect particle trajectories and separation efficiency.
  • Utilizing this comprehensive examination, scientists hope to optimize the design and functioning parameters of the hydrocyclones, which will in turn improve the efficacy and efficiency of particle separation procedures in viscoelastic food solutions.

💡 Why This Matters

This work deepens our understanding of the fundamental laws governing the universe, from subatomic particles to cosmic structures.

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📋 Article Details

Category ⚛️ Physics & Space Science
Published May 10, 2024
Journal International Journal of Innovative Science and Research Technology (IJISRT)
Authors Raj Shekhar, Abir Chakravorty
DOI 10.38124/ijisrt/ijisrt24apr2380
Citations 958
Source OpenAlex

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