Informazioni sul documento
- Università
- Politecnico di Milano
- Corso di laurea
- Energy Engineering
- Materia
- Power Production from Renewable Energy
- Classificazione
- Esercizi · Divisi per argomento
- Formato originale
- Testo
- Testo ricercabile
Divisi per argomento di Power Production from Renewable Energy per il corso di Energy Engineering presso Politecnico di Milano. Materiale proveniente dall’archivio storico Studwiz e classificato per la consultazione online.
Divisi per argomento di Power Production from Renewable Energy 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.
DESIGN AND ECONOMIC FEASIBILITY OF A CONCENTRATED SOLAR PLANT Power production from renewable energy – A.Y. 2020/21 Prof. Paolo Silva – Ing. Dario Alfani Design of collector field A parabolic trough collector is used to heat up 1 kg/s of HTF at Tin to a given Tout. Determine the required collector length and the efficiencies (optical and thermal) for different concentration ratio (CR equal to 50, 80 and 100) assuming a DNI of 900 W/m2 and an ambient temperature of 30 °C. HTF data are reported in Table 1, while collector data are reported in Table 2. Table 1: HTF thermodynamic properties and conditions Synthetic Oil Solar Salts Collector inlet temperature (Tin) 290 °C 290 °C Collector outlet temperature (Tout) 390 °C 550 °C Mean density () 760 kg/m3 1’800 kg/m3 Mean specific heat (cp) 2.5 kJ/kgK 1.5 kJ/kgK Table 2: Collector properties COLLECTOR Mirror Reflectivity (m) 0.905 Absorber Absorptivity (abs) 0.95 Intercept factor () 1-0.001*CR Absorber outer diameter (Dext,abs) 70 mm Glass envelope Trasmittance (g) 0.97 Thermal losses (W/m) 0.00826×T2 - 3.81×T + 554 Design of the CSP plant Figure 1: Simplified parabolic trough CSP plant layout Design a parabolic trough CSP plant with a power block of 50 MWel net power. The solar field has synthetic oil as heat transfer fluid and a solar multiple equal to 2. The selected collectors have the same properties reported in Table 2 and an aperture of 5.75 m. The design DNI is 900 W/m2 and a design ambient temperature of 30 °C. The power block efficiency is 0.66 with respect to the Lorenz efficiency (computed between the HTF source and a heat sink at T=Tamb). Table 3: plant data HTF return T from PB 290 °C p solar field 15 bar HTF collector outlet T 390 °C hydr, SF PUMP 0.85 Collector aperture 5.75 m el-mech, SF PUMP 0.94…
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