Informazioni sul documento
- Università
- Politecnico di Milano
- Corso di laurea
- Energy Engineering
- Materia
- Energy Conversion A
- Classificazione
- Esame · Esame completo
- Contenuto
- Testo d’esame
- Formato originale
- Testo
- Testo ricercabile
Esame completo di Energy Conversion A per il corso di Energy Engineering presso Politecnico di Milano. Materiale proveniente dall’archivio storico Studwiz e classificato per la consultazione online.
Esame completo di Energy Conversion A per il corso di Energy Engineering presso Politecnico di Milano. Materiale proveniente dall’archivio storico Studwiz e classificato per la consultazione online.
Qualità dell’importazione: il testo è stato estratto direttamente dal documento originale.
Passaggi rappresentativi riconosciuti nelle diverse parti del materiale. Il testo completo resta presente nella pagina per la ricerca, mentre l’anteprima compatta rende più semplice la lettura.
ENERGY CONVERSION A 2019-20 Note: you can keep this text for self-evaluation at the end of the exam; in case you withdraw, you shall return it. Exam 14/02/2020 Please, write your person code and surname-name on all sheets you hand in. Exercise 1 (10 points) A conventional micro gas turbine is modified to operate with concentrated solar power: the combustor is replaced with a solar collector on which solar irradiation is concentrated to attain the same turbine inlet temperature of 950 °C at peak conditions (direct irradiation of 800 W/m2). Considering pressure drops in turbine components, please: i. motivate clearly the solution procedure and highlight neatly the assumptions (1 point); ii. sketch clearly the process flow diagram and the cycle on the T-s diagram (1.5 points); iii. estimate the mass flow rate of breathed air to produce 100 kW of electric output assuming proper values for the design parameters (2.5 points); iv. compute the second-law efficiency loss due to energy introduction in the cycle under proper simplifying assumptions (2 points); v. assuming a shadow coefficient of 5, calculate the land extension of the heliostat field referring to peak conditions (3 points). Exercise 2 (12 points) Consider two air streams characterized as follows: • Stream A: temperature 300 °C, pressure 5 bar and mass flow rate 10 kg/s, • Stream B: temperature -100 °C, pressure 0.5 bar and mass flow rate 5 kg/s. Please: i. clearly motivate the solution procedure and highlight the assumptions (1 point); ii. compute the maximum mechanical power obtainable simultaneously from the two sources (2 points); iii. propose and sketch an optimal plant layout that exploits simultaneously the two streams and that does not employ heat exchangers (2 point); iv. sketch the cycle on the T-s…
Prima pagina del documento.