Studied on the feasibility of a wind power park in Indonesia

M Djasani, K Limam, Olea Popescu, Mykola Savytskyi, O Koval

Abstract


The average global power consumption currently stands at 15 terawatts
(TW), and the global wind power potential alone is 72 TW. Ach country’s
energy policy and wind energy potential must be taken into account.Here
we carry out a study on the Feasibility of a wind turbine park in Indonesia.
We presented in this work, a first part a modeling and a simulation of a wind
conversion system and thus an estimate of the wind energy potential (powers
available, recovered and useful) on Indonesia sites.
Keywords: Energy, wind power, potential, feasibility, conversion, turbine,
distribution.


Keywords


wind power park

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References


R. Maouedj*, S. Bousalem, B. Benyoucef Unité de Recherche des Matériaux et Energies Renouvelables (URMER) BP 119, 13000 Tlemcen, Algérie.

Performances d’un système éolien pour le site d’Adrar. Le 7eme congrès national de la physique et ses applications (CNPA’ 2006) a Béchar du 18 au 20 Décembre 2006.

Sathyajith M. Wind energy fundamentals, resource analysis and economics. Faculty of Engineering, KCAET. Tavanur, Malapuram, Kerala. India.

Fernando D. Bianchi, Hernán De Battista and Ricardo J. Mantz. Wind Turbine Control

Systems Principles, Modelling and Gain Scheduling Design , Germany

Burton T., Sharpe D., Jenkins N., Bossanyi E. Wind energy handbook. England, 2001.

Energi eolienne pour la fourniture s’electricite, Jean-Marc Noel.


GOST Style Citations


1. R. Maouedj*, S. Bousalem, B. Benyoucef Unité de Recherche des Matériaux et Energies Renouvelables (URMER) BP 119, 13000 Tlemcen, Algérie.

2. Performances d’un système éolien pour le site d’Adrar. Le 7eme congrès national de la physique et ses applications (CNPA’ 2006) a Béchar du 18 au 20 Décembre 2006.

3. Sathyajith M. Wind energy fundamentals, resource analysis and economics. Faculty of Engineering, KCAET. Tavanur, Malapuram, Kerala. India.

4. Fernando D. Bianchi, Hernán De Battista and Ricardo J. Mantz. Wind Turbine Control

5. Systems Principles, Modelling and Gain Scheduling Design , Germany

6. Burton T., Sharpe D., Jenkins N., Bossanyi E. Wind energy handbook. England, 2001.

7. Energi eolienne pour la fourniture s’electricite, Jean-Marc Noel.



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