Apr

16

2021

Advanced Heat Transfer: Thermal Radiation

BaDshaH 16 Apr 2021 20:53 LEARNING » e-learning - Tutorial

Advanced Heat Transfer: Thermal Radiation

MP4 | Video: h264, 1280x720 | Audio: AAC, 44100 Hz
Language: English | Size: 2.12 GB | Duration: 7h 33m

What you'll learn
Classify electromagnetic radiation, and identify thermal radiation
Understand the idealized blackbody, and calculate the total and spectral blackbody emissive power
Calculate the fraction of radiation emitted in a specified wavelength band using the blackbody radiation functions
Understand the concept of radiation intensity, and define spectral directional quantities using intensity
Develop a clear understanding of the properties emissivity, absorptivity, relflectivity, and transmissivity on spectral, directional, and total basis
Apply Kirchhoff's law to determine the absorptivity of a surface when its emissivity is known
Define view factor, and understand its importance in radiation heat transfer calculations
Develop view factor relations, and calculate the unknown view factors in an enclosure by using these relations
Calculate radiation heat transfer between black surfaces
Determine radiation heat transfer between diffuse and gray surfaces in an enclosure using the concept of radiosity
Quantify the effect of radiation shields on the reduction of radiation heat transfer between two surfaces

Requirements
Fundamentals of Heat Transfer Course
Engineering Thermodynamics Course

Description
We start this course with a discussion of electromagnetic waves and the electromagnetic spectrum, with particular emphasis on thermal radiation. Then we introduce the idealized blackbody, blackbody radiation, and blackbody radiation function, together with the Stefan-Boltzmann law, Planck's law, and Wien's displacement law.

Radiation is emitted by every point on a plane surface in all directions into the hemisphere above the surface. The quantity that describes the magnitude of radiation emitted or incident in a specified direction in space is the radiation intensity. Various radiation fluxes such as emissive power, irradiation, and radiosity are expressed in terms of intensity. This is followed by a discussion of radiative properties of materials such as emissivity, absorptivity, reflectivity, and transmissivity and their dependence on wavelength, direction, and temperature. The greenhouse effect is presented as an example of the consequences of the wavelength dependence of radiation properties.

We then discuss view factors and the rules associated with them. View factor expressions and charts for some common configurations are given, and the crossed-strings method is presented. We then discuss radiation heat transfer, first between black surfaces and then between nonblack surfaces using the radiation network approach. We continue with radiation shields and discuss the its radiation effects.

Who this course is for:
Engineering Students

Homepage

https://www.udemy.com/course/advanced-heat-transfer-thermal-radiation/


Advanced Heat Transfer: Thermal Radiation

Download From Rapidgator


https://rapidgator.net/file/15bc8177b099abe2ebb2896373d5557c
https://rapidgator.net/file/a34164d4ae5ac8ce7815f963a87cd0df
https://rapidgator.net/file/2464b181a9e35f93aeee591b8532a7cc


Download From Nitroflare


http://nitroflare.com/view/A82035F8703E895/BaDshaH.Advanced_Heat_Transfer_Thermal_Radiation.part1.rar
http://nitroflare.com/view/6D4C71D89D82604/BaDshaH.Advanced_Heat_Transfer_Thermal_Radiation.part2.rar
http://nitroflare.com/view/2A3F7B2BDA2C46F/BaDshaH.Advanced_Heat_Transfer_Thermal_Radiation.part3.rar


High Speed Download

Add Comment

  • People and smileys emojis
    Animals and nature emojis
    Food and drinks emojis
    Activities emojis
    Travelling and places emojis
    Objects emojis
    Symbols emojis
    Flags emojis