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CORDIS - Résultats de la recherche de l’UE
CORDIS

Solar Hybrid Air-sCO2 Power Plants

CORDIS fournit des liens vers les livrables publics et les publications des projets HORIZON.

Les liens vers les livrables et les publications des projets du 7e PC, ainsi que les liens vers certains types de résultats spécifiques tels que les jeux de données et les logiciels, sont récupérés dynamiquement sur OpenAIRE .

Livrables

SHARP-sCO2 Heat Exchanger design - T3.1 (s’ouvre dans une nouvelle fenêtre)

Final design and material identification of the air-sCO2 heat edxchanger to be installed in TUD lab according to thermophysical, fluid-dynamic, mechanical operation constraints as well as to lab requirements. Guidelines for prototype manufacturing and operation. Pre-design report at M6, optimized design at M18.

SHARP-sCO2 Receiver experimental results report and correlations – T2.5 (s’ouvre dans une nouvelle fenêtre)

Lessons learnt from on-Sun experimental campaign of the novel SHARP-sCO2 solar receiver, its integration at IMDEA lab and interaction with the solar field are documented. The report also describes performance correlations derived from the operation of the system, particularly at off-design and validates numerical analyses performed during design phases.

SHARP-sCO2 TES optimized design -T4.1 (s’ouvre dans une nouvelle fenêtre)

Final design and material identification of the novel radial TES packed bed to be installed in KTH lab according to thermophysical, fluid-dynamic, mechanical operation constraints as well as to lab requirements. Guidelines for prototype manufacturing and operation. Pre-design report at M6, optimized design at M18.

Dynamic and Techno-economic modelling/simulation activities results also in accordance to feasibility studies setup in T6.3 – T5.2-T5.3 (s’ouvre dans une nouvelle fenêtre)

This report explains the techno-economic model developed for assessment of the SHARP-sCO2 plants in WP6. User guidelines are provided and a representative case study is included. Correlations for dynamic modelling and costs are described, based on input from different involved partners.

SHARP-sCO2 replication strategy and TRL9 Roadmap – including replication feasibility studies – T6.2-T6.3 (s’ouvre dans une nouvelle fenêtre)

Analysis of next R&D, business and procedural steps towards the full marketability and technology maturity of SHARP-sCO2 innovations

Experimental results report and correlations - T4.5 (s’ouvre dans une nouvelle fenêtre)

Lessons learnt from the experimental campaign of the novel SHARP-sCO2 TES and air electric heater, and their integration at KTH lab are documented. The report also describes performance correlations derived from the operation of the system, particularly at off-design and validates numerical analyses performed during design phases.

Report on dissemination and communication activities including stakeholders’ vision document and interaction with EU Initiatives and sisters projects - T6.1 (s’ouvre dans une nouvelle fenêtre)

Description of SHARP-sCO2 dissemination and stakeholders group activities during the first half and end of the project (M18 and M36 respectively) and presentation of collected insights and feedback. Presentation of the interactions performed via surveys, questionnaires, interviews and dedicated events towards both market roll-out and policy promotion

Environmental/Social Impact assessment of SHARP-sCO2 solutions – T5.4 (s’ouvre dans une nouvelle fenêtre)

Report quantifying the life cycle assessment of SHARP-sCO2 solution accounting for the defined design and material identification of BOP components, with focus on enhancing circularity by design and potential impact. The report also includes an analysis of social aspects related to sCO2 power plants, particularly if coupled with CSP plants to facilitate their social acceptance.

SHARP-sCO2 HEX Experimental Results Report and Correlations - T3.4 (s’ouvre dans une nouvelle fenêtre)

Lessons learnt from the experimental campaign of the novel SHARP-sCO2 air to sCO2 heat exchanger, and its integration at SuCOO lab are documented. The report also describes performance correlations derived from the operation of the system, particularly at off-design and validates numerical analyses performed during design phases.

SHARP-sCO2 outcomes exploitation plan - T6.4 (s’ouvre dans une nouvelle fenêtre)

Report describing guidelines for project outcomes promotion on the market based on pre-identified KERs in D6.1. The report is issued in two occasions, at end of first year, once designs have advanced, with goal to present KER and preliminary exploitation strategy, and at the end of the project to build upon operational experience and suggest final market-entry recommendations.

Advanced layouts of the SHARP-sCO2 solution (Preliminary layouts and system integration and boundary definitions to be presented at M6) – T5.1 (s’ouvre dans une nouvelle fenêtre)

This report includes functional diagrams describing how to integrate the SHARP-sCO2 components in the new hybrid advanced CSP plants (at different scales). Guidelines for integration both at thermodynamic and operational level (how/where) are presented, alongside with operational modes and expected KPI functions to evaluate its performance (technically, economically and environmentally), including range of expected values as first hypothesis. The report is updated in M15 based on component optimized designs and preliminary findings.

SHARP-sCO2 Data Management Plan (DMP) (s’ouvre dans une nouvelle fenêtre)

Report describing how to handle project research data according both to ethical, industrial confidentiality and GDPR issues

Dissemination and Stakeholders’ engagement Plan and D&C material (website, leaflet, poster etc.) – T6.1 (s’ouvre dans une nouvelle fenêtre)

Description of communication and dissemination measures for the promotion of SHARP-sCO2 Project outcomes, also including a preliminary identification of KERs. Description of SHARP-sCO2 public website and social media accounts to be used to promote the project.

Publications

Design and setup of the suCOO-Lab sCO2 test facility at TU Dresden (s’ouvre dans une nouvelle fenêtre)

Auteurs: Rath, Sebastian; Gampe, Uwe; Breitkopf, Cornelia; Jäger, Andreas
Publié dans: 2023
Éditeur: DuEPublico 2
DOI: 10.17185/DUEPUBLICO/77269

Design optimization of an innovative layered radial-flow high-temperature packed bed thermal energy storage (s’ouvre dans une nouvelle fenêtre)

Auteurs: Silvia Trevisan, Rafael Guedez
Publié dans: Journal of Energy Storage, 2024, ISSN 2352-152X
Éditeur: Elsevier
DOI: 10.1016/j.est.2024.110767

Innovation trends on high-temperature thermal energy storage to defossilize energy systems (s’ouvre dans une nouvelle fenêtre)

Auteurs: Pantaleo, Antonio Marco; Trevisan, Silvia; Matteucci, Francesco; Cabeza, Luisa F.
Publié dans: Journal of Energy Storage, 2024, ISSN 2352-152X
Éditeur: Elsevier Ltd
DOI: 10.2139/SSRN.4783293

Energy (s’ouvre dans une nouvelle fenêtre)

Auteurs: Salvatore Guccione; Rafael Guedez
Publié dans: Energy, 2024, ISSN 0360-5442
Éditeur: Elsevier Ltd
DOI: 10.1016/J.ENERGY.2024.133500

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