The article deals with the study of Wells turbine in accordance with the wave energy potential of the northeastern coast of the Absheron Peninsula. Show a methodical approach to determine the main technical parameters of the turbine Wells. In accordance with the procedure were the main parameters of the Wells turbine, including efficiency and productivity.
| Published in | American Journal of Modern Energy (Volume 3, Issue 4) |
| DOI | 10.11648/j.ajme.20170304.14 |
| Page(s) | 84-89 |
| Creative Commons |
This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited. |
| Copyright |
Copyright © The Author(s), 2017. Published by Science Publishing Group |
Wave Energy, Wells Turbine, Absheron Peninsula, Caspian Sea Coast
| [1] | Astariz S, Iglesias G. The economics of wave energy: A review. Renewable Sustainable Energy Review, 2015; 45, pp 397-408. |
| [2] | Soleimani K, Ketabdari MJ, Khorasani F. Feasibility study on tidal and wave energy conversion in Iranian seas. Sustain Energy Technol Assessments 2015; 11, pp 77-86. |
| [3] | Vicinanza, D., P. Contestabile, and V. Ferrante, Wave energy potential in the north-west of Sardinia (Italy). Renewable Energy, 2013. 50: pp. 506-521. |
| [4] | Bilgili M, Ozbek A, Sahin B, Kahraman A. An overview of renewable electric power capacity and progress in new technologies in the world. Renewable Sustainable Energy Review, 2015; 49, pp 323-334. |
| [5] | Lejerskog E, Bostrom C, Hai L, Waters R, Leijon M. Experimental results on power absorption from a wave energy converter at the Lysekil wave energy research site. Renewable Energy, 2015; 77, pp 9-14. |
| [6] | Lopez I, Andreu J, Ceballos S, de Alegría IM, Kortabarria I. Review of wave energy technologies and the necessary power-equipment. Renewable Sustainable Energy Review, 2013; 27, pp 413-434. |
| [7] | Kamranzad B, Etemad Shahidi A, Chegini V. Sustainability of wave energy resources in southern Caspian Sea. Energy, 2016; 97, pp 549-559. |
| [8] | Saket, A. and A. Etemad-Shahidi, Wave energy potential along the northern coasts of the Gulf of Oman, Iran. Renewable Energy, 2012. 40(1): pp. 90-97. |
| [9] | Liberti, L., A. Carillo, and G. Sannino, Wave energy resource assessment in the Mediterranean, the Italian perspective. Renewable Energy, 2013. 50: pp. 938-949. |
| [10] | Gholamreza Amirinia, Bahareh Kamranzad, Somayeh Mafi. Wind and wave energy potential in southern Caspian Sea using uncertainty analysis. Energy, 2016; 88, pp 1-14. |
| [11] | Azerbaijan National Atlas, 2014. |
| [12] | In-Depth Review of the Energy Efficiency Policy of Azerbaijan. Energy charger secretariat. 2013, pp. 114. |
| [13] | Torresi M., Camporeale S. M., Strippoli P. D., and Pascazio G. Accurate numerical simulation of a high solidity Wells turbine. Renewable Energy, 33: 735–747, 2008. |
| [14] | Dorrell D. G. and Hsieh M.-F., “Segmented small oscillating water columns using in-line Savonius rotors”// ISOPE Conference 2007, Portugal, Lisbon, 1-6 July, 2007. |
| [15] | Dhanasekaran T. S. and Govardhan M. Computational analysis of performance and flow investigation on Wells turbine for wave energy conversion// Renewable. Energy, 30, 2129–2147, 2005. |
| [16] | Folley M., Curran R., Whittaker T. Comparison of LIMPET contra-rotating wells turbine with theoretical and model test predictions// Ocean Engineering, 33 (2006), 8-9, 1056-106. |
APA Style
Fuad Mammadov. (2017). Analysis of Wave Power Plant on the Northeast Coast of the Absheron Peninsula. American Journal of Modern Energy, 3(4), 84-89. https://doi.org/10.11648/j.ajme.20170304.14
ACS Style
Fuad Mammadov. Analysis of Wave Power Plant on the Northeast Coast of the Absheron Peninsula. Am. J. Mod. Energy 2017, 3(4), 84-89. doi: 10.11648/j.ajme.20170304.14
AMA Style
Fuad Mammadov. Analysis of Wave Power Plant on the Northeast Coast of the Absheron Peninsula. Am J Mod Energy. 2017;3(4):84-89. doi: 10.11648/j.ajme.20170304.14
@article{10.11648/j.ajme.20170304.14,
author = {Fuad Mammadov},
title = {Analysis of Wave Power Plant on the Northeast Coast of the Absheron Peninsula},
journal = {American Journal of Modern Energy},
volume = {3},
number = {4},
pages = {84-89},
doi = {10.11648/j.ajme.20170304.14},
url = {https://doi.org/10.11648/j.ajme.20170304.14},
eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.ajme.20170304.14},
abstract = {The article deals with the study of Wells turbine in accordance with the wave energy potential of the northeastern coast of the Absheron Peninsula. Show a methodical approach to determine the main technical parameters of the turbine Wells. In accordance with the procedure were the main parameters of the Wells turbine, including efficiency and productivity.},
year = {2017}
}
TY - JOUR T1 - Analysis of Wave Power Plant on the Northeast Coast of the Absheron Peninsula AU - Fuad Mammadov Y1 - 2017/08/09 PY - 2017 N1 - https://doi.org/10.11648/j.ajme.20170304.14 DO - 10.11648/j.ajme.20170304.14 T2 - American Journal of Modern Energy JF - American Journal of Modern Energy JO - American Journal of Modern Energy SP - 84 EP - 89 PB - Science Publishing Group SN - 2575-3797 UR - https://doi.org/10.11648/j.ajme.20170304.14 AB - The article deals with the study of Wells turbine in accordance with the wave energy potential of the northeastern coast of the Absheron Peninsula. Show a methodical approach to determine the main technical parameters of the turbine Wells. In accordance with the procedure were the main parameters of the Wells turbine, including efficiency and productivity. VL - 3 IS - 4 ER -