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Udemy - Heat And Mass Transfer - HMT

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Udemy - Heat And Mass Transfer - HMT (Size: 2.2 GB)
  001 Convection heat transfer.mp4 40.3 MB
  001 Convection heat transfer_en.vtt 3.6 KB
  001 Scope of the course.mp4 59.8 MB
  001 Scope of the course_en.vtt 4.7 KB
  001 Thermal conductivity.mp4 57.9 MB
  001 Thermal conductivity_en.vtt 3.9 KB
  001 Types of heat exchangers.mp4 44.1 MB
  001 Types of heat exchangers_en.vtt 3.3 KB
  001 What is radiation.mp4 90.3 MB
  001 What is radiation_en.vtt 7.7 KB
  002 Absorbtivity, Reflectivity, Transmitivity.mp4 51.1 MB
  002 Absorbtivity, Reflectivity, Transmitivity_en.vtt 5.3 KB
  002 First law of thermodynamics.mp4 62.6 MB
  002 First law of thermodynamics_en.vtt 10.5 KB
  002 Forced convection heat transfer.mp4 89.4 MB
  002 Forced convection heat transfer_en.vtt 10.3 KB
  002 Heat conduction in gases.mp4 53.7 MB
  002 Heat conduction in gases_en.vtt 5.7 KB
  002 Modes of heat transfer.mp4 150.4 MB
  002 Modes of heat transfer_en.vtt 13.7 KB
  003 Classification of heat exchangers.mp4 33.9 MB
  003 Classification of heat exchangers_en.vtt 4.3 KB
  003 Governing laws of heat transfer.mp4 98.3 MB
  003 Governing laws of heat transfer_en.vtt 11.2 KB
  003 Interpretation Of Fourier's law.mp4 32 MB
  003 Interpretation Of Fourier's law_en.vtt 4.6 KB
  003 Laws of thermal radiation.mp4 25.2 MB
  003 Laws of thermal radiation_en.vtt 2.9 KB
  003 Physical significance of Reynolds Number in forced convection heat transfer.mp4 29.1 MB
  003 Physical significance of Reynolds Number in forced convection heat transfer_en.vtt 2.5 KB
  004 Electrical analogy of heat transfer.mp4 39.5 MB
  004 Electrical analogy of heat transfer_en.vtt 4.5 KB
  004 In compressible flow over flat surface.mp4 36.4 MB
  004 In compressible flow over flat surface_en.vtt 3.7 KB
  004 MTD (Mean Temperature Difference).mp4 23.9 MB
  004 MTD (Mean Temperature Difference)_en.vtt 2.7 KB
  004 Shape factor.mp4 40.5 MB
  004 Shape factor_en.vtt 4.8 KB
  005 Conduction heat transfer through composite slab.mp4 55 MB
  005 Conduction heat transfer through composite slab_en.vtt 6.5 KB
  005 LMTD Logarithmic Mean Temperature Difference (Parallel flow).mp4 43.2 MB
  005 LMTD Logarithmic Mean Temperature Difference (Parallel flow)_en.vtt 5.5 KB
  005 Physical significance of Nu and Pr in forced convection heat transfer.mp4 59.8 MB
  005 Physical significance of Nu and Pr in forced convection heat transfer_en.vtt 5.3 KB
  005 Radiation heat exchange.mp4 34 MB
  005 Radiation heat exchange_en.vtt 3.4 KB
  006 BONUS Lecture.html 2.9 KB
  006 Conduction-convection heat transfer through composite slab.mp4 62.5 MB
  006 Conduction-convection heat transfer through composite slab_en.vtt 8.6 KB
  006 LMTD Logarithmic Mean Temperature Difference (Counter flow).mp4 22.2 MB
  006 LMTD Logarithmic Mean Temperature Difference (Counter flow)_en.vtt 2.4 KB
  006 Thermal boundary layer - TBL.mp4 25.2 MB
  006 Thermal boundary layer - TBL_en.vtt 2.8 KB
  007 Energy balance for differential control volume of TBL.mp4 21.5 MB
  007 Energy balance for differential control volume of TBL_en.vtt 2.2 KB
  007 Radial conduction through hollow cylinder.mp4 42.8 MB
  007 Radial conduction through hollow cylinder_en.vtt 5.6 KB
  007 Some special cases.mp4 29.2 MB
  007 Some special cases_en.vtt 3.2 KB
  008 Effectiveness of heat exchanger.mp4 21.9 MB
  008 Effectiveness of heat exchanger_en.vtt 2.2 KB
  008 Momentum equation of HBL & energy equation of TBL.mp4 55.2 MB
  008 Momentum equation of HBL & energy equation of TBL_en.vtt 7.5 KB
  008 Radial conduction through composite cylinder.mp4 26.1 MB
  008 Radial conduction through composite cylinder_en.vtt 2.9 KB
  009 Forced convection in flow through pipes and ducts.mp4 35.5 MB
  009 Forced convection in flow through pipes and ducts_en.vtt 3.6 KB
  009 NTU and Fouling factor.mp4 31.1 MB
  009 NTU and Fouling factor_en.vtt 3.3 KB
  009 Radial conduction-convection heat transfer through composite cylinder.mp4 68.8 MB
  009 Radial conduction-convection heat transfer through composite cylinder_en.vtt 6.9 KB
  010 Critical radius of insulation.mp4 102.2 MB
  010 Critical radius of insulation_en.vtt 8.5 KB
  010 Free_Natural convection.mp4 16.9 MB
  010 Free_Natural convection_en.vtt 1.9 KB
  011 Radial conduction through hollow sphere.mp4 32 MB
  011 Radial conduction through hollow sphere_en.vtt 3.8 KB
  012 Derivation of generalized heat conduction equation.mp4 67.4 MB
  012 Derivation of generalized heat conduction equation_en.vtt 7.4 KB
  013 Heat generation in a slab.mp4 72.5 MB
  013 Heat generation in a slab_en.vtt 9.6 KB
  014 Heat generation in a cylinder.mp4 64 MB
  014 Heat generation in a cylinder_en.vtt 7.7 KB
  015 What are Fins _.mp4 32 MB
  015 What are Fins __en.vtt 1.9 KB
  016 Analysis of rectangular fins.mp4 100.3 MB
  016 Analysis of rectangular fins_en.vtt 13.3 KB
  017 Fin efficiency and effectiveness.mp4 30.9 MB
  017 Fin efficiency and effectiveness_en.vtt 3.2 KB
  018 Unsteady_Transient conduction.mp4 52.6 MB
  018 Unsteady_Transient conduction_en.vtt 5.5 KB
  29346760-HMT.pdf 6 MB
  Bonus Resources.txt 307.2 B
  Get Bonus Downloads Here.url 204.8 B
  ▲ 94 total files

Description


Heat And Mass Transfer - HMT
https://CourseWikia.com

MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz
Language: English | Size: 2.21 GB | Duration: 4h 22m
Fundamentals of heat transfer with comprehensive derivation and examples
What you'll learn
Modes of heat transfer and Governing laws of heat transfer.
Thermal conductivity, Heat conduction in gases.
Interpretation Of Fourier's law, Electrical analogy of heat transfer, Critical radius of insulation.
Heat generation in a slab and cylinder, Fins, Unsteady/Transient conduction.
Forced convection heat transfer, Reynold’s Number, Prandtl Number, Nusselt Number.
Incompressible flow over flat surface, HBL, TBL, Forced convection in flow through pipes and ducts, Free/Natural convection.
Types of heat exchangers, First law of thermodynamics, Classification of heat exchangers.
LMTD for parallel and counter flow HE, NTU, Fouling factor.
Absorbtivity, Reflectivity, Transmitivity, Laws of thermal radiation, Shape factor, Radiation heat exchange.
Requirements
Must have a sound knowledge of differentiation and integration.
Preliminary idea of electrical analogy like current, potential difference, resistance.
Thermodynamic processes as such adiabatic, constant pressure and isothermal.
The most important trait - "A kin and curious mind".
Description
Learn about Conduction, Convection, Radiation and Heat exchangers in a most comprehensive and interactive way. Derivations of formulas, concepts, Numerical, examples are inculcated in the course with advance applications. The course aims at covering all the topics and concepts of HMT as per academics of students. Following are the topics (in detail) that will be covered in the course.

Conduction

Thermal conductivity, Heat conduction in gases, Interpretation Of Fourier's law, Electrical analogy of heat transfer, Critical radius of insulation, Heat generation in a slab and cylinder, Fins, Unsteady/Transient conduction.

Convection

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