Marine Energy and Energy Storage Sea Tech Week October 10 th 2012

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1 Marine Energy and Energy Storage Sea Tech Week October 10 th 2012 Document produit par ENEA Consulting I 89 rue Réaumur, Paris I +33 (0) I

2 Energy Consulting for the Industry ENERGY PURPOSE PERFORMANCE Our commitment: conciliate performance and purpose in who we are and what we do From strategy to technical expertise, we support our clients through the energy transition and implementation of sustainable development within their core businesses and projects: STRATÉGIE Our clients: Energy producers Energy consumers Technology providers Investors Engineering companies Equipment manufacturers Institutions Social stakeholders TECHNIQUE We have the expertise to work on every energy technology Energy efficiency Industrial ecology & Waste valorization Biogas & Bio-energies Renewable energies Carbon capture, transport and storage Hydrogen & Fuel cells Energy storage With a sustainable and global approach Environmental performance Social acceptance of projects Business and project indicators 20% Concerned about our own impact and convinced that building a meaningful organization generates performance, we dedicate 20% of our time to energy access issues, particularly through pro bono work. ENEA Consulting 89 rue Reaumur Paris LLC with a capital stock RCS Tel : Mail :

3 Reasons to be for Energy Storage Intermittent renewable energy deployment Electric peak sensitivity Constraint increase on energy/demand equilibrium New flexible production capacities New investments on the grid Control on the demand side ENERGY STORAGE Key element of a CO2-free electricity mix Economic leverage Energy independence 3

4 Storage technologies : a large diversity Various maturity states R&D Démonstrateur Commercial Maturité technologique Energie STEP Terrestres Hydrogène et PaC conventionnelles CAES Sous-marin CAES Adiabatique Autres STEP CAES Air liquide CAES Quasiisothermique conventionnel Stockage thermique STEP Marines Batterie Red-Ox Vanadium d électricité Batterie Red-Ox Zinc-Bromine Batterie Sodium-Souffre Batterie Métal-Air Batterie Lithium-Ion Batterie Plomb-Acide Batterie Nickel-Cadmium Volants d inertie (Haute vitesse) Puissance Super condensateurs SMES Volants d inertie (Basse vitesse) Diverse technical characteristics Temps de décharge Energie Hydrogène et PaC 10 Heures Zinc-Bromine Vanadium CAES STEP Heures CAES Quasi-isothermique STEP Marines Stockage thermique d électricité Tube hydraulique souterrain Sodium-Souffre Lithium-Ion Plomb-Acide Nickel-Cadmium Volants d inertie Minutes Super condensateurs Inductances supraconductrices Secondes Puissance 1 kw 10 kw 100 MW 100 kw 1 MW 10 MW 1GW Puissance Heterogeneous costs Coût Energie /kwh Inductances Super supraconductrices condensateurs Volants d inertie 1000 Lithium-Ion 100 Plomb-Acide Nickel-Cadmium Sodium-Souffre Vanadium STEP Marines STEP Zinc Bromine Hydrogène et PaC CAES Autres CAES Métal-Air Coût Puissance /kw 4

5 Marine energy technologies Tidal Energy Wave Energy Current Energy Sea Thermal Energy Osmotic Energy Floating Wind Energy Sources : EDF, Pelamis Wave Power Ltd, DCNS, Statkraft 5

6 Marine Energy comparison: intermittency vs shore distance Intermittence Limited predictability of intermittence Wave Floating wind turbines Predictable intermittence Tidal range turbine Current Continuous Osmotic OTEC 0 km 1 km 100 km Distance from the coast 6

7 Energy Storage economics : which service for which player? Load shifting Power subscription optimisation Puissance décharge Puissance Ecrêtage charge 1 jour 3 h Intermittency control Frequency regulation Puissance Fréquence 50 Hz Seuil de délestage 10 minutes 1 min 7

8 Various project choices and related economics One offshore centralized storage Lower connection costs One on-shore centralized storage Lower CAPEX and OPEX Ancillary services On every energy device / turbine Economy of scales Onshore assembly 8

9 Technical options Discharge time Hydrogen and Fuel Cells Energy 10 Hours Hours Redox Zinc-Bromide Thermal Energy Storage PSH Sodium- Lithium-Ion Sulphur Lead-Acid Nickel-Cadmium Redox Vanadium Seawater CAES PSH Flywheel Minutes Super capacitator SMES Seconds Power 1 kw 10 kw 100 kw 1 MW 10 MW 100 MW 1GW Power 9

10 Marine Energy Maturity States source : France Energies Marines Maturity Tidal turbine systems Marine Off-shore wind turbines turbines (floating) Offshore wind (fixed) OTEC Wave technologies Osmotic After 2015 Between 2005 and 2015 Before 2005 Date of start-up Mature segments with low grade prospects 1st segment of modern marine renewable energies to have reached a commercial stage Segments receiving investment and technical development support Segments with little maturity, and low visibility in the short and medium term 10

11 Storage technologies : various maturity status as well Energy R&D Demonstrators Commercial Other PSH Thermal Energy Storage Underwater Liquid Breathing CAES Metal-Air Battery Hydrogen and Fuel Cells Adiabatic CAES Seawater PSH Flywheel (High Speed) Zinc Bromine Redox Flow Battery Vanadium Redox Battery Lithium-Ion Battery Conventional CAES Sodium- Sulphur Battery Conventional Land PSH Lead-Acid Battery Nickel- Cadmium Battery Mature Technologies Power Super capacitors SMES Flywheel (Low Speed) 11

12 Geographic deployment : islands Islands Corse Mediterranean Sea Bretagne islands Over-seas Departments UK 12

13 Geographic deployment: coastal applications EMACOP Program French research program EMACOP (Energies Marines, Côtières et Portuaires) Synergies of marine energies with coastal and port infrastructures (Bridge piles, sea walls) REX : Voith Hydro 300kW wave energy plant, integrated in a sea wall (Spain) Source : Voith Hydro 13

14 Geographic deployment : river applications Rivers: Rhône Charente (Eco Cinetic) Garonne (projet SEENEOH de la société Energie de la Lune à Bordeaux) Saint Laurent, Québec Source : Eco Cinetic 14

15 Already proven business models Pumped Hydro Storage and Load Shifting Thermal storage for consumption optimization % of installed storage GW power Puissance frigorifique Décharge Charge 1 jour 15

16 Business models in development Coastal PHS and marine energy Centralized batteries for island systems Decentralized batteries, community storage Load shifting Peak shaving, mix optimization Local consumption optimization Biogas storage Grid storage and ancillary services Industrial utility storage Production flexibilization Frequency regulation Consumption displacement 16

17 Way Forward : right questions to be asked Prospective scenarii / Goals European objectives Ambitious Restrictives Growing markets What for? At what risks? Which opportunities Solve the economic equation Finance your projects Local opportunity identification 17

18 ENEA Consulting: your energy project partner ENVIRONMENTAL & SOCIAL PERFORMANCE Stakeholder Management Social Acceptance Global Performance Technology providers EFFICIENCY & PROCESS Marine energy integration in infrastructure and processes Energy Efficiency AMO, Project management INNOVATION Marketing, competition Business model optimization Project financing Investor advisory Energy producers Energy consumers Engineering Investors 18

19 ENEA Consulting 89 rue Réaumur, Paris Tel : +33 (0) Document produit par ENEA Consulting I 89 rue Réaumur, Paris I +33 (0) I

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