Advanced Certificate in Heat Transfer and Thermal Management for the 21st Century
-- ViewingNowThe Advanced Certificate in Heat Transfer and Thermal Management for the 21st Century is a comprehensive course designed to equip learners with the essential skills needed to excel in the field of thermal management. This course is critical for professionals who want to stay updated with the latest advancements in heat transfer technologies and thermal management strategies, which are vital in various industries like electronics, automotive, aerospace, and energy.
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⢠Fundamentals of Heat Transfer: This unit will cover the basic principles of heat transfer, including conduction, convection, and radiation. It will also introduce students to the properties of materials that affect heat transfer.
⢠Advanced Conduction: This unit will delve deeper into the mechanisms of heat transfer through conduction, including the use of thermal conductivity, temperature gradients, and thermal resistance.
⢠Advanced Convection: This unit will examine the principles of heat transfer through convection, including free and forced convection, convective heat transfer coefficients, and the effects of fluid properties on convection.
⢠Radiative Heat Transfer: This unit will explore the principles of heat transfer through radiation, including the behavior of electromagnetic waves, the Stefan-Boltzmann law, and the effects of surface properties on radiative heat transfer.
⢠Heat Exchangers: This unit will cover the design and operation of heat exchangers, including parallel-flow and counter-flow heat exchangers, cross-flow heat exchangers, and regenerative heat exchangers.
⢠Thermal Management of Electronic Devices: This unit will examine the challenges of thermal management in electronic devices, including the effects of power density, heat dissipation, and thermal design.
⢠Thermal Energy Storage: This unit will explore the principles of thermal energy storage, including sensible, latent, and thermochemical storage.
⢠Computational Heat Transfer: This unit will cover the use of computational methods for simulating heat transfer processes, including the finite difference method, the finite element method, and computational fluid dynamics.
⢠Experimental Methods in Heat Transfer: This unit will provide students with the practical skills needed to design and conduct experiments related to heat transfer, including temperature measurement, data acquisition, and analysis.
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