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MSRIT Transport Phenomena Sem 5 Elective
No Units Titles Sub Titles Chapters
1 Unit 1 Introduction Mathematical Background, Principles of Mathematical Modeling, Vector Analysis, Tensor Mathematics, Green s Theorem VIEW CHAPTERS
2 Unit 2 Fluids Fluid definition, Shear Stress, Shear strain, Newton s law, Fluid flow, Types of flow, Laminar and turbulent flow, Classification of fluids & governing equations, Hydrostatic equilibrium, barometric equation, Pressure measurements, Manometric equation, Continuity equation, Bernoulli s equation, Euler equation, Flow through circular and non circular sections, Hagen-Poiseulles equation, Lossess through pipe and fittings, Turbulent flow, Friction factor VIEW CHAPTERS
3 Unit 3 Flow past immersed bodies and non-Newtonian fluids Drag, Lift, Drag coefficient, Pressure drop correlation-Kozney-Karmen Equation, Ergun equation, Fluidization-Batch and Continuous, Aggregate and Particulate, Pneumatic Conveying, Filtration, Rheology, power law model, Maxwell s model, dash pot and viscous models VIEW CHAPTERS
4 Unit 4 Heat, mass and momentum transfers Heat Transfer, Mechanism of Energy Transport, Temperature Distributions in Solids and in Laminar Flow, The Equations of Change for Non-Isothermal Systems, Temperature Distributions with More than One Independent Variable, Radiation Heat Transfer, Numerical Solutions of Partial Differential Equations, Mass Transfer, Mechanism of Mass Transport, Concentration Distributions in Solids and Laminar Flow, The equations of Change for Multicomponent Systems, Concentration Distributions with more than One Independent Variable, Momentum Transfer, Mechanism of Momentum Transport, Velocity Distributions in Laminar Flow, Equations of Change for Isothermal Systems, Velocity Distributions with More than One Independent Variable, Boundary Layer Theory VIEW CHAPTERS
5 Unit 5 Transport phenomena in bioprocess Unified approach to physical rate processes associated with momentum, mass and energy transport, Differential and integral treatment on the conservation laws, Momentum, mass and energy transfer in laminar and turbulent flow with applications to interphase, Macroscopic balance, Molecular transport properties VIEW CHAPTERS
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