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Logo PROGETTO UE ORC-PLUS

ORC-PLUS

Organic Rankine Cycle - Prototype Link to Unit Storage

Informazioni Generali

Coordinatore:
ENEA (Italia)
Responsabile ENEA:
GAGGIOLI WALTER - TERIN-SSI (CASACCIA)
Ruolo ENEA:
COORD

Descrizione e Attività

Descrizione Generale

In line with the call H2020- LCE-03-2014, ORC-PLUS focuses on increasing the technological performance of renewable energy systems, reducing costs and improving dispatchability. The aim is to develop an optimized combination of innovative Thermal Energy Storage-TES (specialized for CSP scale 1-5 MWe) and engineering solutions to improve the number of production hours of an existing small CSP plant, located in a desert area and coupled with an ORC system. With an optimized TES solution, it is possible to extend periods of energy production of a CSP plant (also during non-solar radiation), eliminating or minimizing the need to burn fossil or renewable fuels in hybrid or back-up systems. Nowadays, efforts are being devoted to R&D on TES for large-scale plants, though large potential for small/medium-scale CSP installations exists.
ORC-PLUS is in the spectrum of “large scale prototype to pre-commercial scale demonstration”. The technology proposed is based on a solar field, using a thermal oil as Heat Transfer Fluid and ORC power unit coupled with an innovative TES. Experimental demonstration of two different industrial prototypes of TES systems will be performed in relevant environment (TRL 6). For each prototype, a simulation model of the pilot processes will be developed, with prototypes of TES systems. The models will be optimized on the basis of the characteristics of the site and power load, to determine conditions and relevant parameters of the real scenarios for each application and to select the TES technology best fitting the needs of the targeted sector. Final result will be an industrial pilot plant used to validate the technology in a real operational environment and to demonstrate its feasibility (TLR7). Validation includes an analysis of the techno-economic viability and environmental impact, and of the replicability of the pilot plant final design. This proposal is supported by three support letters of ESTELA, ANEST and Green Energy Park (Morocco).

Attività svolta da ENEA

L’ENEA coordina il progetto e si occuperà dello sviluppo di un prototipo del sistema di accumulo e della formazione dei tecnici e ricercatori locali. Inoltre, contribuirà alla progettazione e alla realizzazione del nuovo sistema di accumulo di energia termica ad alta temperatura, che permetterà all’impianto di produrre energia elettrica fino a 4 ore in assenza di radiazione solare.
Il progetto si inserisce nel quadro delle collaborazioni tra ENEA e Paesi della sponda sud del Mediterraneo e riguarda, nello specifico, l’impianto solare del Green Energy Park di Ben Guerir, situato in una zona desertica del Marocco.

Programmi Europei

Programma:
HORIZON 2020 → Energy (IA - Innovation Action)

Dati Finanziari (in euro)

Costo Eleggibile

Progetto:
7.297.149,00
ENEA:
1.258.125,00

Contributo

Al progetto:
6.339.316,00
A ENEA:
1.258.125,00

Durata del Progetto

Anno di stipula e Durata:
2015 - 54 mesi
Periodo:
01-05-2015 → 31-10-2019

Numero di Partner (7)

Ruolo Tipologia Nome Nazione
Piccole e medie imprese EURONOVIA Francia
Istituti di ricerca FHG - FRAUNHOFER GESELLSCHAFT ZUR FOERDERUNG DER ANGEWANDTEN FORSCHUNG E.V. Germania
Industrie ENERRAY SPA Italia
Piccole e medie imprese LATERIZI GAMBETTOLA SRL Italia
Istituti di ricerca INSTITUT DE RECHERCHES EN ENERGIE SOLAIRE ET ENERGIES NOUVELLES Marocco
Istituti di ricerca CENTRO DE INVESTIGACION COOPERATIVADE ENERGIAS ALTERNATIVAS FUNDACION Spagna
COORD Istituti di ricerca ENEA Italia

Keyword associate al progetto dal database di CORDIS (4)

Keyword Argomento Macro
RENEWABLE SOURCES OF ENERGY Energy RENEWABLE SOURCES OF ENERGY
Solar energy Energy RENEWABLE SOURCES OF ENERGY
INNOVATION, TECHNOLOGY TRANSFER RTD Horizontal Topics INNOVATION, TECHNOLOGY TRANSFER
SCIENTIFIC RESEARCH RTD Horizontal Topics SCIENTIFIC RESEARCH

Altre Keyword non presenti nel database di CORDIS (0)

Nessuna altra keyword disponibile per questo progetto