Guia docente 2020_21
Escola de Enxeñaría de Minas e Enerxía
Degree in Energy Engineering
 Subjects
  Thermodynamics and heat transfer
   Assessment
  Description Qualification Training and Learning Results
Lecturing It values the attention of the student in the class and his *aprovechamiento continuous and progressive of the matter. *puntuan The answers of the students to the questions done by the professor as well as the interesting questions that do the students. RESULTS OF LEARNING: Comprise the concept of *Exergía differentiated of the concept of Energy, and learn to calculate the *exergía available, the *exergía taken advantage of and the *exerxía stray in processes of thermodynamic systems. Comprise the thermodynamic basic appearances of the engines of alternative combustion and of the thermal head offices of gas, and learn to determine performances and energetic efficiencies and *exergéticas. Comprise the thermodynamic basic appearances of the thermal head offices of steam, and learn to determine performances and energetic efficiencies and *exergéticas. Comprise the basic appearances of the machines *frigoríficas and bombs of heat, and learn to determine performances and energetic efficiencies and *exergéticas. Comprise the physical bases of the transmission of heat by driving, and learn to determine flows of heat and distribution of temperatures mainly in means in solid phase. Comprise the physical bases of the transmission of heat by convection, and learn to determine flows of heat and distribution of temperatures in fluent means. Comprise the physical bases of the transmission of heat by radiation, and learn to determine flows of heat and distribution of temperatures in solid and fluent means. 15 C10
D1
D2
D3
D4
D7
D8
Problem solving For those students that carry to the day the resolution of the problems and exercises that commission along the course. It values the capacity of the student to find solutions to said problems and exercises. RESULTS OF LEARNING: Comprise the concept of *Exergía differentiated of the concept of Energy, and learn to calculate the *exergía available, the *exergía taken advantage of and the *exerxía stray in processes of thermodynamic systems. Comprise the thermodynamic basic appearances of the engines of alternative combustion and of the thermal head offices of gas, and learn to determine performances and energetic efficiencies and *exergéticas. Comprise the thermodynamic basic appearances of the thermal head offices of steam, and learn to determine performances and energetic efficiencies and *exergéticas. Comprise the basic appearances of the machines *frigoríficas and bombs of heat, and learn to determine performances and energetic efficiencies and *exergéticas. Comprise the physical bases of the transmission of heat by driving, and learn to determine flows of heat and distribution of temperatures mainly in means in solid phase. Comprise the physical bases of the transmission of heat by convection, and learn to determine flows of heat and distribution of temperatures in fluent means. Comprise the physical bases of the transmission of heat by radiation, and learn to determine flows of heat and distribution of temperatures in solid and fluent means. 15 C10
D1
D2
D3
D4
D7
D8
Laboratory practical For those students that make 100% of the practices of laboratory. It values the implication of the student in the realisation of the practices and his capacity to apply the theoretical contents in the realisation of the experimental practices. RESULTS OF LEARNING: Comprise the concept of *Exergía differentiated of the concept of Energy, and learn to calculate the *exergía available, the *exergía taken advantage of and the *exerxía stray in processes of thermodynamic systems. Comprise the thermodynamic basic appearances of the engines of alternative combustion and of the thermal head offices of gas, and learn to determine performances and energetic efficiencies and *exergéticas. Comprise the thermodynamic basic appearances of the thermal head offices of steam, and learn to determine performances and energetic efficiencies and *exergéticas. Comprise the basic appearances of the machines *frigoríficas and bombs of heat, and learn to determine performances and energetic efficiencies and *exergéticas. Comprise the physical bases of the transmission of heat by driving, and learn to determine flows of heat and distribution of temperatures mainly in means in solid phase. Comprise the physical bases of the transmission of heat by convection, and learn to determine flows of heat and distribution of temperatures in fluent means. Comprise the physical bases of the transmission of heat by radiation, and learn to determine flows of heat and distribution of temperatures in solid and fluent means. 10 C10
D1
D2
D3
D4
D7
D8
Essay questions exam Examination written of questions of theory and of resolution of problems and/or exercises. RESULTS OF LEARNING: Comprise the concept of *Exergía differentiated of the concept of Energy, and learn to calculate the *exergía available, the *exergía taken advantage of and the *exerxía stray in processes of thermodynamic systems. Comprise the thermodynamic basic appearances of the engines of alternative combustion and of the thermal head offices of gas, and learn to determine performances and energetic efficiencies and *exergéticas. Comprise the thermodynamic basic appearances of the thermal head offices of steam, and learn to determine performances and energetic efficiencies and *exergéticas. Comprise the basic appearances of the machines *frigoríficas and bombs of heat, and learn to determine performances and energetic efficiencies and *exergéticas. Comprise the physical bases of the transmission of heat by driving, and learn to determine flows of heat and distribution of temperatures mainly in means in solid phase. Comprise the physical bases of the transmission of heat by convection, and learn to determine flows of heat and distribution of temperatures in fluent means. Comprise the physical bases of the transmission of heat by radiation, and learn to determine flows of heat and distribution of temperatures in solid and fluent means. 60 C10
D1
D2
D3
D4
D7
D8
 
Other comments on the Evaluation
<*p>Those students that make the tasks that commissions the professor along the course, and surpass the proofs of continuous evaluation, will be able to arrive to the final examination with an income of four points on ten, and will be able to reach with the resolution of the examination the maximum note of ten.<*p>Those students that do not make the tasks that commissions the professor along the course, and do not surpass the proofs of continuous evaluation, the maximum punctuation that will be able to obtain in the final examination is a six.<*p>Depending on the availability of time and programming of the course, will be able to do partial examinations of the matter.<*p>The examination of Julio will value on ten<*p *class=&*quot;*MsoNormal&*quot;>Calendar of examinations. Verify/consult of up to date form in the web page of the centre:<*p *class=&*quot;*MsoNormal&*quot;>http://minaseenerxia.uvigo.es/es/docencia/examenes
Universidade de Vigo            | Reitoría | Campus Universitario | C.P. 36.310 Vigo (Pontevedra) | España | Tlf: +34 986 812 000