CR60017: Cryogenic Heat Transfer

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CR60017
Course name CRYOGENIC HEAT TRANSFER
Offered by Cryogenic Engineering
Credits 4
L-T-P 3-1-0
Previous Year Grade Distribution
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Syllabus

Syllabus mentioned in ERP

Conductive Heat Transfer: Generalised solution of steady and unsteady conduction equations: Heat transfer through composites and materials of variable thermal properties: Analytical and numerical methods; Conductive Heat Transfer Problem: Insulation, Heat leakage and Cooldown looses; Fins and Heat Exchangers; Convective Heat Transfer: Analysis and Theories; Evaluation of heat transfer and friction coefficients for Turbulent and Laminar flow; Forced convection, Natural convection and near critical heat transfer regions; Two Phase Phenomena: Physical description, Pool boiling, Critical heat flux, Condensation, Evaporation, Pressure drop of Two Phase fluid, Forced convection with Two Phase flow, Superfluid heat transfer, Kapitza Resistance; Radiation: Theory, Shape factor, Radiative Exchange.


Concepts taught in class

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Classroom resources

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