Informazioni sul documento
- Università
- Politecnico di Milano
- Corso di laurea
- Energy Engineering
- Materia
- Solar and Biomass Power Generation
- Classificazione
- Esame · Esame completo
- Contenuto
- Testo d’esame
- Formato originale
- Testo
- Testo ricercabile
Esame completo di Solar and Biomass Power Generation 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 Solar and Biomass Power Generation 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.
SOLAR AND BIOMASS POWER GENERATION AY 2021-22 11th January 2022 Prof. Giampaolo Manzolini Time: 100 minutes Instructions for the examination: 1) Clearly indicate your surname and name on all the sheets you will deliver. 2) The score refers to exercises done in a comprehensive manner with exact numerical results. Numerical results correct but not accompanied by expla- nations will not be taken into account. The final score can be normalized according to the average results. 3) Answer briefly and clearly only to the asked questions. Calculations and explanations which do not respond to the questions will not be considered for evaluation even if correct. 4) Talking with colleagues and / or cheating will cause the cancellation of the exam. 5) All the needed data for the resolution of exercises lies on this paper. It is NOT ALLOWED to use material other than this (e.g. books, clipboard etc.). 6) Not all the provided inputs are necessary for the problem solving CSP exercise (16 points) Question A (5 points): A CSP plant based on solar tower technology produces 400 GWh of electricity in a year. The solar plant counts 10’000 heliostats by 90 m 2 each and the DNI and diffuse radiations are equal to 2750 kWh/m 2/y and 350 kWh/m2/y, respectively. Calculate the average efficiency of the different conversion steps (optical, thermal, piping, power block and auxiliaries) knowing that the yearly optical efficiency is equal to 65%, the power block operates always at full load between 550°C and 300°C the second law efficiency is equal to 57%, piping losses can be neglected while the auxiliaries consumptions are 1 MW every hour of the year, regardless the plant is operating or not. For simplicity assume a constant ambient temperature of 30°C. Question B (6 points): Calculate the optical…
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