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Wave Energy Pedro Zambrana

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Wave Energy Pedro Zambrana

  1. 1. I deal " RENEWABLE ENERGIES " ELECTRICAL OSCILLATING MACHINE. DIRECT EXPLOITATION (DEVELOPMENT) OF THE WAVE ENERGY " THEMATIC BLOCK. ENERGY OF THE MAR
  2. 2. MÁQUINA ELÉCTRICA OSCILANTE EXPLOTACIÓN DIRECTA DE LA ENERGÍA DEL OLEAJE I DESIGN NEW ELECTRICAL MACHINE OSCILLATORY STRUCTURE REQUEST OF CLEAR DECEMBER, 2004 ELECTRICAL OSCILLATING MACHINE DIRECT EXPLOITATION (DEVELOPMENT) OF THE WAVE ENERGY SPECIFIC APPLICATION
  3. 3. ELECTRICAL OSCILLATING MACHINE Rose of the winds Source: www.dama.gov.co Rose of the surge Source: M.T. Pontes y elaboración propia P (kW/m)
  4. 4. ANNUAL POWER OF THE SURGE. NORTH-EAST OF THE ATLANTIC OCEAN ELECTRICAL OSCILLATING MACHINE Potential annual energy 350 MWh/m CANTABRIA The levels of power are expressed I n kW/m Source: WERATLAS (Atlas Europeo de la Energía del Oleaje) y elaboración propia
  5. 5. HISTOGRAM OF THE PROBABILITY OF POWER OF THE SURGE. COAST SANTOÑA's WEST. I HIBERNATE ELECTRICAL OSCILLATING MACHINE Probabilidad de exceso de potencia P (kW/m) Source: M.T. Pontes
  6. 6. ELECTRICAL OSCILLATING MACHINE COST CURVE OF THE LEARNING Source G. Hagerman; Virginia Tech. Research Institute, Alexandria, USA. Tiempo Coste / Potencia first second tirth forth fifth COST ESTIMATED WITH INCOMPLETE INFORMATION PERIOD OF COST ESTIMATE TECHNOLOGICAL MATURITY
  7. 7. ELECTRICAL OSCILLATING MACHINE DPARABOLIC ISPOSITIVO 500 kW. Port Kembla. New South Wales. Source : Energetech Australia Pty. Ltd. 2000.
  8. 8. ELECTRICAL OSCILLATING MACHINE MULTIRESONANT(MULTIRESOUNDING) DEVICE OWC. TOFTESTALLEN (NORWAY) Source J. Falnes, NTNU, Norway.
  9. 9. ELECTRICAL OSCILLATING MACHINE COLUMN OF OSCILLATING WATER, FLOAT I FIX 120 kW . Source : Japan Marine Science and Technology Center.
  10. 10. ELECTRICAL OSCILLATING MACHINE PILOT PLANT(FLOOR) OF BEAK(PEAK) (ALARM) Source : T. Pontes, INETI-Departament of Renewable Energies, Portugal.
  11. 11. ELECTRICAL OSCILLATING MACHINE DEVICE PELAMIS. PROTOTYPE GIVES 375 kW Source : Ocean Power Delivery 2002.
  12. 12. ELECTRICAL OSCILLATING MACHINE Hidráulico Neumátic USELESS DEVICE ELECTRICAL MACHINE CONVENTIONAL Mecánico
  13. 13. ELECTRICAL OSCILLATING MACHINE ELECTRICAL MACHINE CONVENCIONAL oscillanting PENDULOUS CONFIGURATION
  14. 14. STRUCTURE OF THE MACHINE MÁQUINA ELÉCTRICA OSCILANTE DEVELOPED DESIGNS IT ALLOWS RELATIVE MOVEMENT OF THE BODIES HOUSING ELECTRICAL CIRCUITS machine CYLINDRICAL ASYMMETRIC CYLINDRICAL BALLASTED esferic CUERPO 1 CUERPO 2
  15. 15. SPHERICAL MACHINE ELECTRICAL OSCILLATING MACHINE
  16. 16. CYLINDRICAL ASYMMETRIC MACHINE ELECTRICAL OSCILLATING MACHINE
  17. 17. CYLINDRICAL BALLASTED MACHINE ELECTRICAL OSCILLATING MACHINE
  18. 18. CYLINDRICAL BALLASTED MACHINE ELECTRICAL OSCILLATING MACHINE MECHANICAL HARDINESS MINOR COST/kW ADVANTAGES ON OTHER DESIGNS
  19. 19. GENERATION OF ENERGY ELECTRICAL OSCILLATING MACHINE MOVEMENT BUOY Instante t 1 Instante t 2 Instante t 3 F.e.m. ELECTRICAL ENERGY
  20. 20. CONCLUSIONS ROBUSTEZ. ESTANQUEDAD SENCILLEZ CONSTRUCTIVA MINOR UNITARY COST ADVANTAGES ELECTRICAL OSCILLATING MACHINE CONVENTIONAL DEVICES SIN CONVERTIDOR ENERGÉTICO ON CYLINDRICAL BALLASTED MACHINE
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