Executive Development Programme in Heat Transfer Techniques Principles
-- ViewingNowThe Executive Development Programme in Heat Transfer Techniques Principles is a certificate course that holds significant importance for professionals seeking to enhance their understanding of heat transfer processes. This program is designed to equip learners with the essential skills and knowledge necessary to excel in various industries, including manufacturing, automotive, HVAC, and energy.
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⢠Fundamentals of Heat Transfer: An introduction to heat transfer principles, including conduction, convection, and radiation. This unit will cover the basic concepts and laws of heat transfer, such as Fourier's law and Newton's law of cooling. ⢠Conduction Heat Transfer: This unit will focus on conduction heat transfer, including steady-state and transient conduction, and the use of conduction shape factors. It will cover the use of conduction equations, heat flux, and thermal resistance. ⢠Convective Heat Transfer: This unit will cover convective heat transfer, including forced and natural convection, and the use of convection correlations. It will also cover the use of convection equations, heat transfer coefficients, and Nusselt numbers. ⢠Radiative Heat Transfer: This unit will focus on radiative heat transfer, including thermal radiation, blackbody radiation, and radiative properties. It will cover the use of radiative transfer equations, view factors, and radiation shields. ⢠Heat Exchanger Design: This unit will cover the design and analysis of heat exchangers, including shell and tube heat exchangers, plate heat exchangers, and air-cooled heat exchangers. It will cover the use of heat exchanger equations and the use of rating programs. ⢠Boiling and Condensation Heat Transfer: This unit will focus on boiling and condensation heat transfer, including nucleate boiling, film boiling, and dropwise condensation. It will cover the use of boiling and condensation equations and the effect of surface roughness. ⢠Thermal Energy Storage: This unit will cover thermal energy storage, including sensible heat storage, latent heat storage, and thermochemical storage. It will cover the use of thermal storage materials, heat exchangers, and insulation. ⢠Computational Heat Transfer: This unit will focus on the use of computational methods for heat transfer analysis, including finite difference, finite element, and boundary element
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