Javascript must be enabled to continue!
Design and Performance Analysis of Distributed Equal Angle Spiral Vertical Axis Wind Turbine
View through CrossRef
Background:
The wind turbine is divided into a horizontal axis and a vertical axis depending
on the relative positions of the rotating shaft and the ground. The advantage of the choke
wind turbine is that the starting torque is large and the starting performance is good. The disadvantage
is that the rotation resistance is large, the rotation speed is low, the asymmetric flow occurs
when the wind wheel rotates, the lateral thrust is generated, and the wind energy utilization rate is
lowered. How to improve the wind energy utilization rate of the resistance wind turbine is an important
issue to be solved by the wind power technology.
Objective:
The nautilus isometric spiral wind turbines studied in this paper have been introduced
and analyzed in detail, preparing for the further flow analysis and layout of wind turbines, improving
the wind energy utilization rate of wind turbines, introducing patents of other structures and output
characteristics of its generator set.
Methods:
Combined with the flow field analysis of ANSYS CFX software, the numerical simulation
of the new wind turbine was carried out, and the aerodynamic performance of the new vertical
axis wind turbine was analyzed. The mathematical model and control model of the generator were
established by the maximum power control method, and the accuracy of the simulation results was
verified by the measured data.
Results:
The basic parameters of the new wind turbine tip speed ratio, torque coefficient and wind
energy utilization coefficient are analyzed. Changes in wind speed, pressure and eddy viscosity were
investigated. Three-dimensional distribution results of wake parameters such as wind speed and
pressure are obtained. By simulating the natural wind speed, the speed and output current of the
generator during normal operation are obtained.
Conclusion:
By analyzing the wind performance and power generation characteristics of the new
wind turbine, the feasibility of the new wind turbine is determined, which provides reference and
reference for the optimal design and development of the wind turbine structure.
Bentham Science Publishers Ltd.
Title: Design and Performance Analysis of Distributed Equal Angle Spiral Vertical Axis Wind Turbine
Description:
Background:
The wind turbine is divided into a horizontal axis and a vertical axis depending
on the relative positions of the rotating shaft and the ground.
The advantage of the choke
wind turbine is that the starting torque is large and the starting performance is good.
The disadvantage
is that the rotation resistance is large, the rotation speed is low, the asymmetric flow occurs
when the wind wheel rotates, the lateral thrust is generated, and the wind energy utilization rate is
lowered.
How to improve the wind energy utilization rate of the resistance wind turbine is an important
issue to be solved by the wind power technology.
Objective:
The nautilus isometric spiral wind turbines studied in this paper have been introduced
and analyzed in detail, preparing for the further flow analysis and layout of wind turbines, improving
the wind energy utilization rate of wind turbines, introducing patents of other structures and output
characteristics of its generator set.
Methods:
Combined with the flow field analysis of ANSYS CFX software, the numerical simulation
of the new wind turbine was carried out, and the aerodynamic performance of the new vertical
axis wind turbine was analyzed.
The mathematical model and control model of the generator were
established by the maximum power control method, and the accuracy of the simulation results was
verified by the measured data.
Results:
The basic parameters of the new wind turbine tip speed ratio, torque coefficient and wind
energy utilization coefficient are analyzed.
Changes in wind speed, pressure and eddy viscosity were
investigated.
Three-dimensional distribution results of wake parameters such as wind speed and
pressure are obtained.
By simulating the natural wind speed, the speed and output current of the
generator during normal operation are obtained.
Conclusion:
By analyzing the wind performance and power generation characteristics of the new
wind turbine, the feasibility of the new wind turbine is determined, which provides reference and
reference for the optimal design and development of the wind turbine structure.
Related Results
=== PAPER RETRACTED === === PAPER RETRACTED === === PAPER RETRACTED === === PAPER RETRACTED === === PAPER RETRACTED === === PAPER RETRACTED === Knowledge of the Problem and Intention to Act on Student Environmentally Responsible Behavior
=== PAPER RETRACTED === === PAPER RETRACTED === === PAPER RETRACTED === === PAPER RETRACTED === === PAPER RETRACTED === === PAPER RETRACTED === Knowledge of the Problem and Intention to Act on Student Environmentally Responsible Behavior
<p><span lang="IN"><span style="vertical-align: inherit;"><span style="vertical-align: inherit;">=== PAPER RETRACTED === </span></span></span...
Analysis of Senegal Type Vertical Axis Wind Turbines Arrangement in Wind Farm
Analysis of Senegal Type Vertical Axis Wind Turbines Arrangement in Wind Farm
Background:
In a wind farm, the wind speed of the downstream wind turbine will be
lower than the wind speed of the upstream wind turbine due to the influence of the wake. Therefore...
Study and Analysis of Adaptive PI Control for Pitch Angle on Wind Turbine System
Study and Analysis of Adaptive PI Control for Pitch Angle on Wind Turbine System
In the current work, a study is proposed using the engineering program MATLAB through computer tests of a simulation model for modifying the tilt angle in wind turbines, with a stu...
Six-Bucket Sim-Savonius Hybrid Turbine: Experimental Analysis and Performance Evaluation
Six-Bucket Sim-Savonius Hybrid Turbine: Experimental Analysis and Performance Evaluation
The growing awareness and apprehension regarding environmental issues have led to a surge in the demand for energy alternatives that are environmentally sustainable. Wind energy is...
Savonius Rotor for Offshore Wind Energy Conversion
Savonius Rotor for Offshore Wind Energy Conversion
Abstract
Analysis of performance is presented for wind energy conversion by a Savonius type vertical axis rotor configured for generation of electrical power. The...
wLEACH: Real-Time Meteorological Data Based Wind LEACH
wLEACH: Real-Time Meteorological Data Based Wind LEACH
Introduction:Nowadays, Wireless Sensor Network (WSN) plays an important role in various fields. The limited power capability of the sensor nodes in the WSN brings constraints on th...
Wake Alleviating Devices for Offshore Wind Turbines
Wake Alleviating Devices for Offshore Wind Turbines
The wake behind an offshore wind turbine can persist for several turbine diameters, so decreasing the space between wind turbines in an array leads to strong wake-turbine interacti...
Numerical Simulation of Large Scale Wind Turbine Wake and the Influence on Vibration of Downstream Wind Turbine
Numerical Simulation of Large Scale Wind Turbine Wake and the Influence on Vibration of Downstream Wind Turbine
In order to investigate the wake evolution law of large scale horizontal axis wind turbine and its influence on vibration of downstream wind turbine, large eddy simulation method h...


