
SONCEBOZ SA
SONCEBOZ SA
2 Projects, page 1 of 1
Open Access Mandate for Publications assignment_turned_in Project2015 - 2020Partners:QUERDENKFABRIK AG, TSK FLAGSOL, CENTRO NACIONAL DE ENERGIAS RENOVABLES CENER, FCT HARTBEARBEITUNGS GMBH, K CONTROLS LTD +23 partnersQUERDENKFABRIK AG,TSK FLAGSOL,CENTRO NACIONAL DE ENERGIAS RENOVABLES CENER,FCT HARTBEARBEITUNGS GMBH,K CONTROLS LTD,HAVER & BOECKER OHG,CENTRO NACIONAL DE ENERGIAS RENOVABLES CENER,IK4-TEKNIKER,EUREC,SONCEBOZ SA,SONCEBOZ SA,FHG,QUERDENKFABRIK AG,FCT HARTBEARBEITUNGS GMBH,LETI,CIEMAT,CERA SYSTEM,FCT,K CONTROLS LTD,Bluebox Energy Ltd,IK4-TEKNIKER,EUREC,General Electric (France),HAVER & BOECKER OHG,FCT,CERA SYSTEM,Bluebox Energy Ltd,TSK FLAGSOLFunder: European Commission Project Code: 640905Overall Budget: 6,461,970 EURFunder Contribution: 6,104,030 EURThe main objective of this project is to significantly reduce costs of concentrated solar power, in order to pave the way for its deserved competitiveness on the power market. Specifically, the solar-to-electric conversion efficiency of the plant will be improved by increased receiver operating temperatures as well as an innovative power cycle configuration also providing advantages regarding plant operation. Additionally, improved control methodologies based on dynamic multi-aiming-point strategies for heliostats will further enhance efficiency. Besides the improvement of the plants efficiency and operation, also the construction and operational costs will be minimized via mass production of heliostats and smart heliostat calibration systems. The global objective of this project is to increase plant efficiencies and reduce levelized cost of electricity (LCOE) by developing all relevant components that allow implementing an innovative plant configuration. This plant configuration is based on a multi-tower decoupled advanced solar combined cycle approach that not only increases cycle efficiencies but also avoids frequent transients and inefficient partial loads, thus maximizing overall efficiency, reliability as well as dispatchability, all of which are important factors directly related to cost competitiveness on the power market. The core topic of the project, the innovative solar receiver, will be an open volumetric receiver allowing operating temperatures beyond 1200 ºC, providing the absorbed solar heat to the pressurized air circuit of the Brayton cycle via a network of fixed bed regenerative heat exchangers working in alternating modes (non-pressurized heating period, pressurized cooling period).
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For further information contact us at helpdesk@openaire.euOpen Access Mandate for Publications and Research data assignment_turned_in Project2019 - 2023Partners:IQE, AT, CSEM, X-CELEPRINT LIMITED, AT +21 partnersIQE,AT,CSEM,X-CELEPRINT LIMITED,AT,CSEM,ASSOCIATION COMPAZ,L - UP SAS,SONCEBOZ SA,MONDRAGON ASSEMBLY,LABORELEC,LABORELEC,X-CELEPRINT LIMITED,MONDRAGON ASSEMBLY,INSOLIGHT SA,MUON ELECTRIC UNIPESSOAL LDA,MILIEU STUDIO,SONCEBOZ SA,FHG,UPM,X-CELEPRINT,MILIEU STUDIO,3S SWISS SOLAR SOLUTIONS LTD,TUL,IQE,ASSOCIATION COMPAZFunder: European Commission Project Code: 857775Overall Budget: 13,534,500 EURFunder Contribution: 10,590,500 EURThe HIPERION consortium has been assembled to answer the call LC-SC3-RES-15-2019: Increase the competitiveness of the EU PV manufacturing industry. The goal of the project is to bring to fruition at the industrial scale a validated high efficiency module-level innovation, based on a disruptive planar optical micro-tracking technology, which concentrates sunlight on multijunction solar cells, mounted on top of a conventional silicon backplate. The resulting high efficiency solar modules (>30% STC under direct sunlight) with a standard flat panel form factor can be mounted on any standard racks or rooftops. The technology has been extensively demonstrated with outdoor tests and pilot installations. It must be now industrialized for mass production, to enable its integration by manufacturers in their existing production lines. The project will demonstrate at pilot-line level the assembly of these high efficiency modules, while several commercial pilot sites across Europe and qualification tests will further
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