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source: nptelhrd 2014年2月6日
Atmospheric Science - Radiation Heat Transfer by Prof. J. Srinivasan, Department of Atmospheric Science, IISc Bangalore. For more details on NPTEL visit http://nptel.ac.in
Mod-01 Lec-01 Introduction 57:17
Mod-01 Lec-02 Blackbody radiation 58:00
Mod-01 Lec-03 Properties of real surfaces 57:21
Mod-01 Lec-04 Spectral and directional variations 57:21
Mod-02 Lec-05 Shape factor 56:36
Mod-02 Lec-06 Triangular enclosure 57:43
Mod-02 Lec-07 Evaluation of shape factors 55:38
Mod-02 Lec-08 Radiation in enclosures 56:38
Mod-02 Lec-09 Electrical analogy 57:17
Mod-02 Lec-10 Applications 55:52
Mod-02 Lec-11 Non-gray enclosures 56:53
Mod-02 Lec-12 Enclosure with Specular surfaces 57:13
Mod-02 Lec-13 Integral method for enclosures 56:16
Mod-03 Lec-14 Introduction to gas radiation 57:28
Mod-03 Lec-15 Plane parallel model 57:26
Mod-03 Lec-16 Diffusion approximation 56:31
Mod-03 Lec-17 Radiative equilibrium 56:20
Mod-03 Lec-18 Optically thick limit 57:47
Mod-03 Lec-19 Radiation spectroscopy 57:00
Mod-03 Lec-20 Isothermal gas emissivity 56:02
Mod-03 Lec-21 Band models 57:14
Mod-03 Lec-22 Total Emissivity method 53:37
Mod-03 Lec-23 Isothermal gas enclosures 57:09
Mod-03 Lec-24 Well-stirred furnace model 57:00
Mod-03 Lec-25 Gas radiation in complex enclosures 57:18
Mod-03 Lec-26 Interaction between radiation and other modes of heat transfer 57:36
Mod-03 Lec-27 Radiation heat transfer during flow over flat plate 57:01
Mod-04 Lec-28 Radiation and Climate 57:18
Mod-04 Lec-29 Radiative-convective equilibrium 57:15
Mod-04 Lec-30 Radiative equilibrium with scattering 57:08
Mod-04 Lec-31 Radiation measurement 56:46
Mod-04 Lec-32 Radiation with internal heat source 57:01
Mod-04 Lec-33 Particle scattering 55:21
Mod-04 Lec-34 Scattering in the atmosphere 56:44
Mod-04 Lec-35 Non-isotropic scattering 56:26
Mod-04 Lec-36 Approximate methods in scattering: 1 56:37
Mod-04 Lec-37 Approximate methods in scattering: 2 56:18
Mod-04 Lec-38 Monte Carlo method 57:09
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