![]() ![]() Thermodynamic coordinates, state and equations of state. ![]() Basic definitions: primitive and derived quantities. Among the key applications will be studied heat exchangers and heat transfer in extended surfaces such as fins.ĭEFINITIONS AND PRINCIPLES OF THERMODYNAMICS (27 HOURS) In the second part will be analysed, from the phenomenological point of view, the mechanisms by which the heat could be transferred in space and time: heat conduction, convection and radiation. Subsequently the main technologies for the conversion of heat into work and vice versa will be described as well as some methods of calculation will be analysed, in particular will be considered engines and refrigeration equipment (both gas cycles and vapour cycles will be dealt with). The basic concepts, definitions, phenomenological laws and principles will be introduced with their mathematical representations. In the first part, students are guided to understand as a thermodynamic systems and its control surface is linked to the surroundings thank to exchange of heat and work. The course is organized in two parts, each of which will be analysed before the methods and general aspects, and then applications. ![]()
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