Course Status : | Completed |
Course Type : | Elective |
Language for course content : | English |
Duration : | 12 weeks |
Category : |
|
Credit Points : | 3 |
Level : | Undergraduate/Postgraduate |
Start Date : | 22 Jul 2024 |
End Date : | 11 Oct 2024 |
Enrollment Ends : | 05 Aug 2024 |
Exam Registration Ends : | 16 Aug 2024 |
Exam Date : | 27 Oct 2024 IST |
Note: This exam date is subject to change based on seat availability. You can check final exam date on your hall ticket.
Week-1: Basics of Non-Newtonian Fluids
L – 1: Newtonian Fluids and Classification of Non-Newtonian Fluids
L – 2: Time Independent Non-Newtonian Fluids
L – 3: Time Dependent Non-Newtonian Fluids and Viscoelastic Non-Newtonian Fluids
L – 4: Viscoelastic Non-Newtonian Fluids
Week-2: Rheology Measuring Instruments
L – 5: Capillary Viscometers
L – 6: Capillary Viscometers – Errors and Corrections
L – 7: Capillary Viscometers – Errors and Corrections II
Week-3: Rheology Measuring Instruments II
L – 8: Rotational Rheometers
L – 9: Rotational Viscometers – II
L – 10: Rotational Viscometers – III
Week-4: Equations of Change
L – 11: Continuum Hypothesis and Transport Mechanisms
L – 12: Equations of Change for Isothermal Systems
L – 13: Equations of Change for Non-Isothermal Systems
Week-5: Momentum Transfer of Non-Newtonian Fluids
L – 14: Time Independent Fluids Flow Through Pipes
L – 15: Power-law and Ellis Model Fluids Flow Through Pipes
L – 16: Bingham Plastic Fluids Flow through Pipes
L – 17: Herschel-Bulkley Fluids Flow through Pipes
Week-6: Momentum Transfer of Non-Newtonian Fluids-2
L – 18: Transition and Turbulent Flow of GNF in Pipes
L – 19: Transition and Turbulent Flow of GNF in Pipes – 2
L – 20: Laminar flow of GNFs between Parallel Plates and along Inclined Surface
L – 21: Laminar flow of GNFs along Inclined Surface and Concentric Annulus
Week-7: Flow of Non-Newtonian Fluids through Porous Media
L – 22: Flow of Non-Newtonian Fluids through Packed Beds
L – 23: Dispersion in Packed Beds: Non-Newtonian Effects
L – 24: Liquid-Solid Fluidization by Power-law Liquids
Week-8: Heat Transfer Phenomena of Non-Newtonian Fluids
L – 25: Free Convection between Two Vertical Plates
L – 26: Viscous Heat Generation
L – 27: Temperature distribution in fluids confined between co-axial cylinders
Week-9: Heat Transfer Phenomena of Non-Newtonian Fluids-2
L – 28: Temperature distribution for FDF of Newtonian fluids in tubes
L – 29: Heat Transfer Combined with Chemical Reactions
L – 30: Transpiration Cooling
Week-10: Mass Transfer Phenomena of Non-Newtonian Fluids
L – 31: Basics of MT; Diffusion Through Stagnant Gas Film
L – 32: Non-Isothermal Diffusive MT and Forced Convective MT
L – 33: Simultaneous Heat and Mass Transfer
L – 34: Mass Transfer Combined with Chemical Reactions
Week-11: Simultaneous HT, MT and Chemical Reactions
L – 35: Quasi-Steady Analysis of Simultaneous HT, MT and Chemical Reaction
L – 36: Quasi-Steady Analysis of Simultaneous HT and MT – I
L – 37: Quasi-Steady Analysis of Simultaneous HT and MT – II
L – 38: Quasi-Steady Analysis of Simultaneous HT and MT – III
Week-12: Boundary Layer Flows
L – 39: Momentum and Thermal Boundary Layer Flows
L – 40: Momentum Boundary Layer Thickness of Non-Newtonian Fluids
L – 41: Thermal and Concentration Boundary Layer Thickness of Non-Newtonian Fluids
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