Fabricated of Vertical Axis wind turbine (VAWT) and study the parameter
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Abstract
Due to the lack of electric power in areas away from power transmission lines and high prices of conventional fuel due to high pollution. A vertical system is used which depends on wind energy used to rotate a vertical turbine. The system is manufactured from local materials and tested. and study the number of blades with the other characterization of system we found, increasing the torque with increasing the blade of turbine, and increasing the power coefficient with increasing the tip speed ratio and low bitz limit
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References
[1] Mahmood, H.Y.; Jassim, S.A. and Hamed, N.F. (2017). design and fabrication of solar dish array and study it characterization. Tikrit Journal of Pure Science, 22 (11):1813 – 1662 .
[2] Mahmood, H.Y; Al-Salih, R.Y.J. (2018). Experimental study of two different types of solar dish characteristics and its efficiency based on Tikrit , Iraq weather conditions .6th Scientific Conference “Energy Renewable and its Applications” IOP Publishing IOP Conf. Series: Journal of Physics: Conf. Series 1032 2018:P.4-10.
[3] Mohamed, M.F ; Mahmood, H.Y. Jassim, S.A. (2012). Design and Characterizations of Solar Steam Engine. International Journal of Recent Research and Review, 6, (8322) :1-7.
[4] Paul, C. A . (2010) .Development and analysis of vertical- axis. wind - turbines .WIT Transactions on State of the Art in Science and Engineering, 44 (1): 1755-8336.
[5] Furat, R. A, and Mohammed, A. A. (2010). Simulation of Wind-Turbine Speed Control by MATLAB. International Journal of Computer and Electrical Engineering, 2(5): 1793-8163.
[6] Gupta, R and Agnimitra, B.(2010). Computational fluid dynamics analysis of atwisted three-bladed H-Darrieus rotor. journal of renewable and sustainable energy, 2. (043111)-1
[7] Ronak, D.G. et al.(2012). design and development of windmill operated water pump. International Journal of Recent Engineering Research and Development,1( 1) :12-38.
[8] Prasad, S.S. ( 2012 ) . Optimized Design of Rotor Blade for a Wind Pump. international journal of renewable energy research, 2(4):747-749.
[9]Mubeen, N. (2014). Non Conventional Method of Water Pumping Using
Vertical Wind Turbine. International Review of Applied Engineering Research,
4 (5): 413-416.
[10] Ilamathi, p. (2016). Hybrid Energy Generation Through Vertical Axis Savonius Wind Turbine and Solar Panel. International Journal for Innovative Research in Science & Technology, 2 (11): 2349-6010 .
[11] ZHU, Jian-yang. (2016). Effect of wind fluctuating on self-starting aerodynamics characteristics of VAWT . Central South University Press and Springer-Verlag Berlin Heidelberg, 23 (8): 2075–2082.
[12] Karthickeyen, N. K. (2017). Design and Experimental Analysis of Wind Powered Operating Pump Prototype. International Journal of Latest Engineering Research and Applications, 2(4):167-170
[13]Yan ,L.I. et al. (2019). Effects of Offset Blade on Aerodynamic Characteristics of Small-Scale Vertical Axis Wind Turbine. Journal of Thermal Science, 28(2):326-339
[14] Joshua, E. (2014).Wind power technology. PHI learning private limited Delhi- India 110092:88-93pp.
[ 15 ] chini, N. M, and Okero, J. M. (2009). design of a windmill for pumping water . Bachelor of Science degree, university of Nairobi KANYA: 8-10PP .
[16] Fang, F. Shangamo, L. yan, L. and Dan, x. (2012). Torque characterization simulation on small scale combine type vertical axis wind turbine Physics Procedia 24 (2012) 781 – 786.
[17] Spectrum W. F . et al. (2017). Determination of the number of Vertical Axis Wind Turbine blades based on power spectrum. E3S Web of Conferences 19, 01003 (2017).
[18] PL Delafin, T. N. (2016). Effect of the number of blades and solidity on the performance of a vertical axis wind turbine. Journal of Physics: Conference Series, 753 (2016) 022033.
[19] Brusca, S. Lanzafame, R. and Messina, M. (2014). Design of a vertical-axis wind turbine: how the aspect ratio affects the turbine’s performance. International journal of Energy Environmental Engineering , 5:333–340.
[20] Mohammed, H. A. (2013). Experimental Comparison Study for Savonius Wind Turbine of Two & Three Blades At Low Wind Speed. International Journal of Modern Engineering Research (IJMER), 3(5): 2978-2986.