Certificate in Heat Transfer for Automotive Engineers
-- ViewingNowThe Certificate in Heat Transfer for Automotive Engineers is a comprehensive course designed to equip learners with the essential skills needed for success in the automotive industry. This course focuses on the critical area of heat transfer, which plays a pivotal role in the design, development, and performance of automotive systems.
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⢠Fundamentals of Heat Transfer: An introduction to heat transfer modes, mechanisms, and governing laws. This unit covers conduction, convection, and radiation, and basic equations such as Fourier's Law, Newton's Law of Cooling, and the Stephan-Boltzmann Law.
⢠Conduction in Automotive Materials: A detailed exploration of heat transfer by conduction in automotive materials, including metals, alloys, plastics, and composites. This unit covers thermal conductivity, thermal resistance, and thermal contact resistance.
⢠Convective Heat Transfer in Automotive Applications: This unit delves into forced and natural convection in automotive systems, such as cooling, heating, and air-conditioning. Topics include the Nusselt number, Reynolds number, and Prandtl number, as well as convective heat transfer coefficients and correlations.
⢠Radiative Heat Transfer in Automotive Systems: An in-depth examination of thermal radiation in automotive engineering, covering the fundamentals of electromagnetic waves, blackbody radiation, and radiative heat transfer in gases, solids, and participating media. This unit also explores radiative properties of materials, such as absorptivity, reflectivity, and emissivity.
⢠Heat Exchangers in Automotive Applications: This unit focuses on the design, analysis, and optimization of automotive heat exchangers, including air-cooled and liquid-cooled radiators, oil coolers, and intercoolers. Topics include heat exchanger geometry, flow arrangements, pressure drop, and efficiency.
⢠Thermal Management of Electric Vehicle Batteries: This unit addresses the unique thermal challenges in electric vehicle battery systems, such as temperature distribution, cooling methods, and thermal runaway prevention. This unit also covers the simulation and modeling of battery thermal behavior.
⢠Thermal Analysis and Simulation Tools for Automotive Engineers: A practical guide to using computational tools for thermal analysis and design in automotive applications. This unit
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