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Radiation Heat Transfer. Instructor: Prof. J. Srinivasan, Department of Mechanical Engineering, IISc Bangalore.
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Description
This course discusses topics on thermal radiation heat transfer: blackbody radiation, radiative properties of surfaces, Kirchoff's law, configuration factor, gas radiation, Planck and Rosseland mean absorption coefficient, radiation in furnaces, radiative equilibrium, interaction between conduction, convection and radiation. (from nptel.ac.in)
Course content
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- Lecture 01 – Introduction Unlimited
- Lecture 02 – Blackbody Radiation Unlimited
- Lecture 03 – Properties of Real Surfaces Unlimited
- Lecture 04 – Spectral and Directional Variations Unlimited
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- Lecture 05 – Shape Factor Unlimited
- Lecture 06 – Triangular Enclosure Unlimited
- Lecture 07 – Evaluation of Shape Factors Unlimited
- Lecture 08 – Radiation in Enclosures Unlimited
- Lecture 09 – Electrical Analogy Unlimited
- Lecture 10 – Applications Unlimited
- Lecture 11 – Non-gray Enclosures Unlimited
- Lecture 12 – Enclosure with Specular Surfaces Unlimited
- Lecture 13 – Integral Method for Enclosures Unlimited
- Lecture 14 – Introduction to Gas Radiation Unlimited
- Lecture 15 – Plane Parallel Model Unlimited
- Lecture 16 – Diffusion Approximation Unlimited
- Lecture 17 – Radiative Equilibrium Unlimited
- Lecture 18 – Optically Thick Limit Unlimited
- Lecture 19 – Radiation Spectroscopy Unlimited
- Lecture 20 – Isothermal Gas Emissivity Unlimited
- Lecture 21 – Band Modes Unlimited
- Lecture 22 – Total Emissivity Method Unlimited
- Lecture 23 – Isothermal Gas Enclosures Unlimited
- Lecture 24 – Well-stirred Furnace Model Unlimited
- Lecture 25 – Gas Radiation in Complex Enclosures Unlimited
- Lecture 26 – Interaction between Radiation and Other Modes of Heat Transfer Unlimited
- Lecture 27 – Radiation Heat Transfer during Flow over Flat Plate Unlimited
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