Optimized INES Anglais 2007 02 objectives faciliti

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Information about Optimized INES Anglais 2007 02 objectives faciliti

Published on January 23, 2008

Author: Michelangelo

Source: authorstream.com

Slide1:  The French Solar Energy Institute : Objectives & perspectives Philippe Malbranche February 2007 Slide2:  INES Foundation act: 3rd of July 2006 Signature of the partnership agreement with Mr Goulard Minister of Research An institute based on a collaborative scheme : the alliance of CEA, CNRS and CSTB partnerships with manufacturers A very young structure, around one year old Why INES ?:  Lens FEE Limoges EMIX Lyon Tenesol Montpellier APEX BP Grenoble Schneider CHAMBERY Toulouse Tenesol Aubagne Giordano Perpignan Tecsol Bourgoin Photowatt Aix Clipsol Pechiney Somfy CIAT Why INES ? The main French solar manufacturers are in the Rhône-Alpes region Manufacturers involved in both solar thermal and PV More than 2/3 of the French turnover The wish of the Savoie department and of the Rhône-Alpes region, to support economic development The strategic alliance of CEA, CNRS and CSTB on this topic Slide4:  « Ines Education » Training R&D Demonstration Three types of activities RDI 100 people Slide5:  Our mission : to develop components, processes and systems to make solar energy an efficient and affordable solution Material Solar devices (PV, active or passive solar ) Solar Systems (electric, thermal) Towards Zero Energy buildings Silicon 100€/kg  15 €/kg Electric: 6 €/Wp  2 €/Wc 100 kWh/m2/y  + X (Positive energy houses) Thermal: 1 €/Wp  0,4 €/W Which thematics are addressed ? The ambition is to address the whole chain, from materials to the applications Slide6:  1. Solar cells and modules 2. Electrical systems 4. Solar thermal systems 5. Solar building design 3. Storage systems Slide7:  « Photosil » Silicon Material Platform Solar electricity platform Nanocomposite Solar cell platform « RESTAURE » National Silicon Cell technology platform Experimental Houses INES main Building « headquarter » Solar Thermal Platform INES Campus Existing Future 15 M€ buildings 2008 2009 15 M€ Equipment From 2007 The R&D facilities Slide8:  Pilot facilities in the commissioning phase Very promising results with 14% efficiency already obtained Photosil, the silicon material platform SEGREGATION Plasma purification & Crystalisation Slide9:  Broken pieces Fusion 2 and plasma treatment Transfert Quick crystallisation Si-SoG Directional Crystallisation Si-PV Fusion 1 Segregation Si-MG Unmolding APOLLON SOLAR Towards a new source of silicon supply Slide10:  Platform dedicated to Silicon Cells Technology Pilot line for silicon solar cells processing since February 2004 Clean Room: 10000 class, 240 m2, will be extended to 1000 in 2008 in Chambéry Industrial tools (b) Up to 200 x 200 mm2 wafer size ADVANCED R&D PLATFORM FOR INDUSTRIAL INVESTIGATION Innovative developments, Process Stabilization, Opened to Partnerships and knowledge-transfer services Tools, Process Steps, Pilot Line, Integration, Cells Testing POCl3 diffusion PECVD chamber Screen printer IR Furnace The Si Cell RESTAURE Research platform 16,7 % multi-C 150 x 150 mm2 with std process Slide11:  The nanocomposite solar cell lab : processing and characterisation equipment November 06 Efficiency = 4,2 % on 28 mm², main activities on stability Slide12:  The PV systems lab Characterization, power system monitoring and analysis Design of innovative solutions for grid-connected and stand-alone applications Demonstration services Slide13:  Lynx 1 Puma 2 et 3 Démonstrateurs (projet INCAS) Champ PV : 100 kW Transformateur x MVA G Cogénération Local technique démonstrateurs Champ PV 10 kW Champ PV x kW AC DC Com Lynx 2 PV systems lab : outline of the microgrid system Slide14:  50 test benches for the evaluation of several storage technologies (-30°C à +60°C) 2 characterisation laboratories Storage system test and R&D facilities A world-class « storage system test facility » Storage systems : a coherence between building and transportation applications :  C100 C10 C1 10C 0,10€/kWh 0,50€/kWh Storage additional cost Current, power Solar and building applications Storage systems : a coherence between building and transportation applications Safety Energy management Slide16:  Design and characterisation of solar thermal systems (heating and cooling) : - Domestic hot water systems, - Kombi-systems, - Cooling systems (dessicant cooling, absorption) Solar thermal systems lab : Test facility for kombi-systems : First test on a CLIPSOL heating system Slide17:  75 m LYNX LYNX II 138 m Zone plateforme INCAS Zone d’exclusion aéroport The Incas platform : a research tool for the design and the performance validation of 0-energy buildings Slide18:  LYNX LYNX II Zone d’exclusion aéroport Later on : Building of many more « concept homes », through a request for proposals opened to consortia of architects, manufacturers, and builders Objectives Innovations Energy consumption and comfort Cost-effectiveness Results : Development of models and software, dedicated to the design of energy-efficient buildings Innovative constructive solutions Building performance characterisation Performance improvement services Slide19:  PHASE 3 Commissioning in 2009 Retour : 2 mars 2007 Jury du concours : 17 avril 2007 Behnisch (Allemand) Mario Cucinella (Italien) Michel Remon (français) Mario Cucinella Michel Remon Behnisch The INES headquarters : an energy-efficient building Slide20:  State-of-the art research & demonstration facilities, opened to : Researchers Industrial partnerships, start-ups A training platform through INES Education, offering knowledge transfer services A large dynamic due to : The coherence of the strategy The complementarity of the partners The investments of local and regional collectivities A strong interest in : PV : mainly 2.1.5 to 2.1.11 CSP : 2.5.1 Renewables for heating and cooling : 4.1.1 to 4.1.3 Smartgrids : 7.1, and 7.3.2 on value of storage Conclusions

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