Aerodynamic Design and Blade Angle Analysis of a Small Horizontal–Axis Wind Turbine

Faculty Engineering Year: 2017
Type of Publication: ZU Hosted Pages:
Authors:
Journal: American Journal of Modern Energy Science Publishing Group Volume:
Keywords : Aerodynamic Design , Blade Angle Analysis , , Small    
Abstract:
The wind turbine blades are the main part of the rotor. Extraction of energy from wind depends on the design of the blade. In this paper, a design method based on Blade Element Momentum (BEM) theory is explained for small horizontal axis wind turbine model (HAWT) blades. The method was used to optimize the chord and twist distributions of the wind turbine blades to enhance the aerodynamic performance of the wind turbine and consequently, increasing the generated power. A Fortran program was developed to use (BEM) in designing a model of Horizontal–Axis Wind Turbine (HAWT). NACA 4412 airfoil was selected for the design of the wind turbine blade. Computational fluid dynamics (CFD) analysis of HAWT blade cross section was carried out at various blade angles with the help of ANSYS Fluent. Present results are compared with other published results. Power generated from wind turbine increases with increasing blade angle due to the increase in air velocity impact on the wind turbine blade. For blade angle change from 20° to 60°, the turbine power from wind has a small change and reaches the maximum when the blade angle equals to 90°. Thus, HAWT power depends on the blade profile and its orientation
   
     
 
       

Author Related Publications

  • Hisham Alsayed Abdelhamid, "Numerical Simulation and Experimental Study for the Impact of In-Flow Nozzle on Spray Characteristics", ASC publication, 2021 More
  • Hisham Alsayed Abdelhamid, "Investigation of a small horizontal-axis wind turbine performance with and without winglet", جامعة الزقازيق, 2019 More
  • Hisham Alsayed Abdelhamid, "Effect of the wall thermal boundary condition on the structure of a confined swirling diffusion flame", Springer Nature, 2019 More
  • Hisham Alsayed Abdelhamid, "PREDICTION OF VELOCITY AND THERMAL BOUNDARY LAYERS OF HIGHLY TURBULENT AIRFLOW OVER HEATED FLAT PLATE", Faculty of Engineering, Cairo University, Egypt,, 2006 More
  • Hisham Alsayed Abdelhamid, "Characteristics of Wind Forces Acting on Uncommon Tall Buildings", Al-Azhar Univ, 2007 More

Department Related Publications

  • Osama Mesalam Saliem Meselhy Saied, "Osama Mesalhy, Khalid lafdi, Ahmed Elgafy, and Keith Bowman, “Numerical Study for Enhancing the Thermal conductivity of Phase Change Material (PCM) Storage Using High Thermal Conductivity Porous Matrix”", لايوجد, 1900 More
  • Osama Mesalam Saliem Meselhy Saied, "Hamed, A. and Mesalhy, O. “Shock Wave Attenuation in Gas Particle Flows”", لايوجد, 1900 More
  • Sayed Ahmed ELsayed Sayed, "Nucleate pool boiling form plain and enhanced single tube to R12 and R134A for air-conditioning evaporators", لايوجد, 1900 More
  • Sayed Ahmed ELsayed Sayed, "Experimental study of heat transfer intensification for boiling of nonazeotropic. mixture R22/R142B on tubes surfaces ", لايوجد, 1900 More
  • Sayed Ahmed ELsayed Sayed, "Numerical solution of lamuar flow and heat transfer over a flat plate in a nonuniform stream", لايوجد, 1900 More
Tweet