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Lecture 23 Boiling Heat Transfer
Ravi M R
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99 видео с канала:
Ravi M R
Lecture 23 Boiling Heat Transfer
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Lecture 22 FIlm condensation correlations dropwise condensation
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Lecture 21 Film condensation Nusselt analysis
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Lecture 20 Laminar and turbulent natural convection boundary layers
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Lecture 19 Laminar Natural Convection - Similarity and integral analysis
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Lecture 18 Laminar Natural Convection vertical flat plate order of magnitude analysis
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Lecture 17 Turbulent pipe flows
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Lecture 16 Developing Laminar Internal Flows
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Lecture 15 Development of Temperature Profile
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Lecture 14 Laminar Internal Flows Hydrodynamically developed flows
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Lecture 13 Computation of Turbulent Flows
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Lecture 12 Miscellaneous Topics BL thickness Average Shear and Heat Transfer
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Lecture 11 Prandtl 2 layer Karman 3 layer models
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Lecture 10 Shear stress and heat flux in turbulent boundary layers
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Lecture 9 Mixing Length and eddy viscosity models
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Lecture-8: Introduction to Turbulent Flows
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Lecture 7 Computational Fluid Dynamics for 2D steady incompressible flows
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Lecture 6 Integral method for laminar boundary layer equations
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Lecture 5 Similarity Solution for laminar boundary layer equations
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Lecture-4-Laminar-boundary-layer-order-of-magnitude-analyais
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Lecture 3 Energy equation and its Non dimensionalization
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Lectue 2 Derivation of Governing equations
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Lectue 1 Introduction to Convection
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Lecture 34 Equilibrium Constant and equilibrium composition
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Lecture 33 Concept of Chemical equilibrium
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Lecture 32 Applications of dilute two phase two component systems
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Lecture 31 Fugaciy of multi component liquid vapour mixures Raoults Law
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Lecture 30 Conditions for equilibrium phase equilibrium
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Lecture 29 Fugacity of constituents of a mixture and Ideal solutions
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Lecture 28 Defining and calculating Fugacity of pure substances
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Lecture 27 Gibbs Duhem Equation measuring patial molal properties
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Lecture 26 Understanding Real Mixtures - Chemical Potential
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Lecture 25 Ideal mixtures of non ideal gases
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Lecture 24 Multi component systems Ideal gas mixtures
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Lecture 23 Exergy balance for Closed and Open Systems
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Lecture 22 Definition of Exergy
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Lecture 21 SSSF and USUF simplifications
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Lecture 20 Laws of thermodynamics for open systems
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Lecture 19 Other Simple Systems
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Lecture 18 Constructing Property Tables
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Lecture-17 Charts for Compressibility, corrections of enthalpy and entropy for real gases
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Lecture 16 Virial Equations of State and Generalized Compressibility Chart
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Lecture 15 Real gases - Cubic Equations of State
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Lecture 14 Ideal Gas Equation of State
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Lecture 13 Property Relations for Simple Compressible Systems
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lecture 12 Corollaries of second law of thermodynamics
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Lecture 11 Mathematical Statements of Second Law
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Lecture 10 Entropy and Thermodynamic Temperature
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Lecture 9 Second Law and Adiabatic Accessibility
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Lecture 8 Friction, Adiabatic Accessibility
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Lecture 7 Understanding Energy, Heat and Work
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Lecture 6 Work, Heat, First Law of Thermodynamics
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Lecture 5 General Definition of Work
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Lecture 4 Understanding Generalized Force
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Lecture 3 Interaction - Generalized coordinates and Forces
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Lecture 2 Definitions in Thermodynamics
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Lecture 1 Introduction to Thermodynamics
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Lecture 14- Thermally developed internal flows
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Lecture 13: Internal flows - Fluid flow
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Lecture- 12: Colburn Analogy and Turbulent boundary layers
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Lecture 11- External Flows : Flat Plate Boundary Layer
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Lecture 10 - Analogy between momentum, heat and mass transfer
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Lecture-9 Reynolds Transport Theorem
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Lecture -8 Introduction to Convection
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Lecture 7 - Radiation exchange in grey-diffuse enclosures
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Lecture 6: Radiation View Factors
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Lecture - 3: Transient Heat Conduction
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Lecture-2 Conduction in cylindrical coordinates; Fins
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Lecture - 5: Radiation Heat Transfer - 2
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Lecture - 4: Radiation Heat Transfer - 1
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Lecture - 1: Heat Conduction Equation
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Lecture 27 Gas turbine power plants and Aircraft gas turbines
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Lecture 28 Combined Cycle - Combined Heat and Power Cycles
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Lecture 26 Subsystems of steam power plants - Pumps and their selection
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Lecture 23 Other (than steam) turbines
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Lecture 22 Losses in turbines - Turbine Efficiency
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Lecture 24 Pumps and Compressors
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Lecture 25 Steam Power Plants
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Lecture 21 Multi-stage turbines, effect of blade height
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Lecture 20 Reaction Turbines
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Lecture 19 Velocity triangles - Impulse turbines
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Lecture 18 Nozzle performance, supersaturation, Turbines
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Lecture-17 Flow through nozzles at off-design conditions
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Lecture-16 Flow through Nozzles
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Lecture-15 Compressible flows through passages
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Lecture-14 IC engine subsystems and Performance measurement
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Lecture-13 IC Engine Components and Subsystems
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Lecture-12 Compression Ignition Engines
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Lecture-11 Otto cycle Analysis and Engine Simulation
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Lecture -10 Engine Performance and Air Standard Cycles
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Lecture-9 IC Engines - SI Engines
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Lecture-8 Stoichiometry and Combustion
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Lecture-7 Fuels and Combustion
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Lecture-5 Airconditioning Cycles and Refrigeration
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Lecture-4 Psychrometric Processes and Air-conditioning
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Lecture-6 Refrigeration Cycles
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Lecture-3 Psychrometric processes
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Lecture-2 Psychrometry
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Lecture-1 Introduction
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Канал: Ravi M R
Lecture 23 Boiling Heat Transfer
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Lecture 22 FIlm condensation correlations dropwise condensation
Скачать
Lecture 21 Film condensation Nusselt analysis
Скачать
Lecture 20 Laminar and turbulent natural convection boundary layers
Скачать
Lecture 19 Laminar Natural Convection - Similarity and integral analysis
Скачать
Lecture 18 Laminar Natural Convection vertical flat plate order of magnitude analysis
Скачать
Lecture 17 Turbulent pipe flows
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Lecture 16 Developing Laminar Internal Flows
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Lecture 15 Development of Temperature Profile
Скачать
Lecture 14 Laminar Internal Flows Hydrodynamically developed flows
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Lecture 13 Computation of Turbulent Flows
Скачать
Lecture 12 Miscellaneous Topics BL thickness Average Shear and Heat Transfer
Скачать
Lecture 11 Prandtl 2 layer Karman 3 layer models
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Lecture 10 Shear stress and heat flux in turbulent boundary layers
Скачать
Lecture 9 Mixing Length and eddy viscosity models
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Lecture-8: Introduction to Turbulent Flows
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Lecture 7 Computational Fluid Dynamics for 2D steady incompressible flows
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Lecture 6 Integral method for laminar boundary layer equations
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Lecture 5 Similarity Solution for laminar boundary layer equations
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Lecture-4-Laminar-boundary-layer-order-of-magnitude-analyais
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Lecture 3 Energy equation and its Non dimensionalization
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Lectue 2 Derivation of Governing equations
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Lectue 1 Introduction to Convection
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Lecture 34 Equilibrium Constant and equilibrium composition
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Lecture 33 Concept of Chemical equilibrium
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Lecture 32 Applications of dilute two phase two component systems
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Lecture 31 Fugaciy of multi component liquid vapour mixures Raoults Law
Скачать
Lecture 30 Conditions for equilibrium phase equilibrium
Скачать
Lecture 29 Fugacity of constituents of a mixture and Ideal solutions
Скачать
Lecture 28 Defining and calculating Fugacity of pure substances
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Lecture 27 Gibbs Duhem Equation measuring patial molal properties
Скачать
Lecture 26 Understanding Real Mixtures - Chemical Potential
Скачать
Lecture 25 Ideal mixtures of non ideal gases
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Lecture 24 Multi component systems Ideal gas mixtures
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Lecture 23 Exergy balance for Closed and Open Systems
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Lecture 22 Definition of Exergy
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Lecture 21 SSSF and USUF simplifications
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Lecture 20 Laws of thermodynamics for open systems
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Lecture 19 Other Simple Systems
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Lecture 18 Constructing Property Tables
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Lecture-17 Charts for Compressibility, corrections of enthalpy and entropy for real gases
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Lecture 16 Virial Equations of State and Generalized Compressibility Chart
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Lecture 15 Real gases - Cubic Equations of State
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Lecture 14 Ideal Gas Equation of State
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Lecture 13 Property Relations for Simple Compressible Systems
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lecture 12 Corollaries of second law of thermodynamics
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Lecture 11 Mathematical Statements of Second Law
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Lecture 10 Entropy and Thermodynamic Temperature
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Lecture 9 Second Law and Adiabatic Accessibility
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Lecture 8 Friction, Adiabatic Accessibility
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Lecture 7 Understanding Energy, Heat and Work
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Lecture 6 Work, Heat, First Law of Thermodynamics
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Lecture 5 General Definition of Work
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Lecture 4 Understanding Generalized Force
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Lecture 3 Interaction - Generalized coordinates and Forces
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Lecture 2 Definitions in Thermodynamics
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Lecture 1 Introduction to Thermodynamics
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Lecture 14- Thermally developed internal flows
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Lecture 13: Internal flows - Fluid flow
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Lecture- 12: Colburn Analogy and Turbulent boundary layers
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Lecture 11- External Flows : Flat Plate Boundary Layer
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Lecture 10 - Analogy between momentum, heat and mass transfer
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Lecture-9 Reynolds Transport Theorem
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Lecture -8 Introduction to Convection
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Lecture 7 - Radiation exchange in grey-diffuse enclosures
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Lecture 6: Radiation View Factors
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Lecture - 3: Transient Heat Conduction
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Lecture-2 Conduction in cylindrical coordinates; Fins
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Lecture - 5: Radiation Heat Transfer - 2
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Lecture - 4: Radiation Heat Transfer - 1
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Lecture - 1: Heat Conduction Equation
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Lecture 27 Gas turbine power plants and Aircraft gas turbines
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Lecture 28 Combined Cycle - Combined Heat and Power Cycles
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Lecture 26 Subsystems of steam power plants - Pumps and their selection
Скачать
Lecture 23 Other (than steam) turbines
Скачать
Lecture 22 Losses in turbines - Turbine Efficiency
Скачать
Lecture 24 Pumps and Compressors
Скачать
Lecture 25 Steam Power Plants
Скачать
Lecture 21 Multi-stage turbines, effect of blade height
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Lecture 20 Reaction Turbines
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Lecture 19 Velocity triangles - Impulse turbines
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Lecture 18 Nozzle performance, supersaturation, Turbines
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Lecture-17 Flow through nozzles at off-design conditions
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Lecture-16 Flow through Nozzles
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Lecture-15 Compressible flows through passages
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Lecture-14 IC engine subsystems and Performance measurement
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Lecture-13 IC Engine Components and Subsystems
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Lecture-12 Compression Ignition Engines
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Lecture-11 Otto cycle Analysis and Engine Simulation
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Lecture -10 Engine Performance and Air Standard Cycles
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Lecture-9 IC Engines - SI Engines
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Lecture-8 Stoichiometry and Combustion
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Lecture-7 Fuels and Combustion
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Lecture-5 Airconditioning Cycles and Refrigeration
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Lecture-4 Psychrometric Processes and Air-conditioning
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Lecture-6 Refrigeration Cycles
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Lecture-3 Psychrometric processes
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Lecture-2 Psychrometry
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Lecture-1 Introduction
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