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Journal ArticleDOI

Numerical Shape Optimization of a Wind Turbine Blades Using Artificial Bee Colony Algorithm

TLDR
In this paper, the aerodynamic performance of wind turbine blades was investigated and an efficient approach for shape optimization of blades was developed by using artificial bee colony coupled by artificial neural networks (ANNs) as an approximate model.
Abstract
Use of wind turbines is rapidly growing because of environmental impacts and daily increase in energy cost. Therefore, improving the wind turbines' characteristics is an important issue in this regard. This study has two objectives: one is investigating the aerodynamic performance of wind turbine blades and the other is developing an efficient approach for shape optimization of blades. The numerical solver of flow field was validated by phase VI rotor as a case study. First, flow field around the wind turbine blades was simulated using computational flow dynamics (CFD) and blade element momentum (BEM) methods, then obtained results were validated by available experimental data to show an appropriate conformity. Then for yielding the optimal answer, a shape optimization algorithm was used based on artificial bee colony (ABC) coupled by artificial neural networks (ANNs) as an approximate model. Effect of most important parameters in wind turbine, such as twist angle, chord line, and pitch angle, was changed till achieving the best performance. The flow characteristics of optimized and initial geometries were compared. The results of global optimization showed a value of 8.58% increase for output power. By using pitch power regulate, the maximum power was shifted to higher wind speed and results in a steady power for all work points.

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Citations
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Journal ArticleDOI

Numerical investigation of porous rib arrangement on heat transfer and entropy generation of nanofluid flow in an annulus using a two-phase mixture model

TL;DR: In this paper, the effect of porous rib arrays on the heat transfer and entropy generation of laminar nanofluid flow inside annuli is studied numerically, using a two-phase mixture model for nanoffluid flow simula...
Journal ArticleDOI

Detailed entropy generation analysis of a Wells turbine using the variation of the blade thickness

TL;DR: In this paper, the effects of blade thickness on the performance of a Wells turbine are discussed based on aerodynamic and entropy generation analysis, and the results reveal that entropy generation seems to give an advantageous effect of reducing the separation at the tip section of the VTB in deep stall condition.
Journal ArticleDOI

Aerodynamic design of horizontal axis wind turbine with innovative local linearization of chord and twist distributions

TL;DR: In this paper, a new linearization method has been used for chord and twist distributions by crossing tangent line through different points on them and the results have determined the best point along chord and twisting distribution which has higher total power coefficient in the linearization process.
References
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Book

Aerodynamics of Wind Turbines

TL;DR: In this article, the authors present a detailed review of the aerodynamics of wind turbines with respect to structural dynamics and control, including a new control chapter that includes details on how to design a classical pitch and torque regulator to control rotational speed and power.
Journal ArticleDOI

State of the art in wind turbine aerodynamics and aeroelasticity

TL;DR: In this article, a comprehensive review of wind turbine aeroelasticity is given, starting with the simple aerodynamic Blade Element Momentum Method and ending with giving a review of the work done applying CFD on wind turbine rotors.
Journal ArticleDOI

A modified Artificial Bee Colony (ABC) algorithm for constrained optimization problems

TL;DR: This paper describes a modified ABC algorithm for constrained optimization problems and compares the performance of the modifiedABC algorithm against those of state-of-the-art algorithms for a set of constrained test problems.
Journal ArticleDOI

A new design method based on artificial bee colony algorithm for digital IIR filters

TL;DR: A new method based on ABC algorithm for designing digital IIR filters is described and its performance is compared with that of a conventional optimization algorithm (LSQ-nonlin) and particle swarm optimization (PSO) algorithm.
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