A Study on the Influence of Different Inflow Conditions on the Output Power and Dynamic Response Characteristics of a Variable Pitch Wind Turbine Structure

This paper introduces a novel pitch adjustment device applicable to small wind turbines. To validate its feasibility under high wind speeds and analyze the impact of pitch angle on the power output characteristics of small wind turbines, a prototype model was manufactured for wind tunnel experiments...

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Main Authors: Daorina Bao, Zhongyu Shi, Chengze Li, Aoxiang Jiang, Qingsong Han, Yongshui Luo, Shaohua Zhang
Format: Article
Language:English
Published: MDPI AG 2024-11-01
Series:Energies
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Online Access:https://www.mdpi.com/1996-1073/17/23/5818
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author Daorina Bao
Zhongyu Shi
Chengze Li
Aoxiang Jiang
Qingsong Han
Yongshui Luo
Shaohua Zhang
author_facet Daorina Bao
Zhongyu Shi
Chengze Li
Aoxiang Jiang
Qingsong Han
Yongshui Luo
Shaohua Zhang
author_sort Daorina Bao
collection DOAJ
description This paper introduces a novel pitch adjustment device applicable to small wind turbines. To validate its feasibility under high wind speeds and analyze the impact of pitch angle on the power output characteristics of small wind turbines, a prototype model was manufactured for wind tunnel experiments. Additionally, we conducted simulations to analyze the stress and displacement responses of key components under uniform airflow, shear airflow, and Extreme Operated Gust conditions. The numerical simulation results were compared with experimental results based on actual measurement points in the wind tunnel experiment, demonstrating that the simulation data accurately reflect the experimental test results, with an overall discrepancy of around 10%, thereby validating the accuracy of the load and constraint settings in the transient dynamics analysis. This study found that, as the pitch angle increased, the structural dynamic response of key wind turbine components under uniform airflow conditions exhibited a decreasing trend, which was proportional to wind speed. Under shear airflow conditions, the response of key components was positively correlated with the shear index, while Extreme Operated Gust significantly increased the amplitude of the response fluctuations. Furthermore, this research revealed that, with an increase in pitch angle, the maximum stress value of the gear under uniform airflow conditions decreased from 27.42 MPa to 7.64 MPa, a reduction of 72.1%. Under shear airflow conditions, the root stress of the gear decreased from 14.441 MPa to 8.879 MPa, a reduction of 49.60%. Under Extreme Operated Gust conditions, the maximum stress of the gear decreased from 17.82 MPa to 15.18 MPa, a reduction of 22.99%.
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spelling doaj-art-68fec9f242d746c0ae5cbf99797dac932025-08-20T01:55:34ZengMDPI AGEnergies1996-10732024-11-011723581810.3390/en17235818A Study on the Influence of Different Inflow Conditions on the Output Power and Dynamic Response Characteristics of a Variable Pitch Wind Turbine StructureDaorina Bao0Zhongyu Shi1Chengze Li2Aoxiang Jiang3Qingsong Han4Yongshui Luo5Shaohua Zhang6School of Energy and Power Engineering, Inner Mongolia University of Technology, Hohhot 010010, ChinaSchool of Energy and Power Engineering, Inner Mongolia University of Technology, Hohhot 010010, ChinaDepartment of Mechanics, Inner Mongolia Open University, Hohhot 010010, ChinaSchool of Energy and Power Engineering, Inner Mongolia University of Technology, Hohhot 010010, ChinaSchool of Energy and Power Engineering, Inner Mongolia University of Technology, Hohhot 010010, ChinaYunda Energy Technology Group Co., Ltd., Hangzhou 311106, ChinaInner Mongolia Hengdong Group Huilong Coal Co., Ltd., Hohhot 010010, ChinaThis paper introduces a novel pitch adjustment device applicable to small wind turbines. To validate its feasibility under high wind speeds and analyze the impact of pitch angle on the power output characteristics of small wind turbines, a prototype model was manufactured for wind tunnel experiments. Additionally, we conducted simulations to analyze the stress and displacement responses of key components under uniform airflow, shear airflow, and Extreme Operated Gust conditions. The numerical simulation results were compared with experimental results based on actual measurement points in the wind tunnel experiment, demonstrating that the simulation data accurately reflect the experimental test results, with an overall discrepancy of around 10%, thereby validating the accuracy of the load and constraint settings in the transient dynamics analysis. This study found that, as the pitch angle increased, the structural dynamic response of key wind turbine components under uniform airflow conditions exhibited a decreasing trend, which was proportional to wind speed. Under shear airflow conditions, the response of key components was positively correlated with the shear index, while Extreme Operated Gust significantly increased the amplitude of the response fluctuations. Furthermore, this research revealed that, with an increase in pitch angle, the maximum stress value of the gear under uniform airflow conditions decreased from 27.42 MPa to 7.64 MPa, a reduction of 72.1%. Under shear airflow conditions, the root stress of the gear decreased from 14.441 MPa to 8.879 MPa, a reduction of 49.60%. Under Extreme Operated Gust conditions, the maximum stress of the gear decreased from 17.82 MPa to 15.18 MPa, a reduction of 22.99%.https://www.mdpi.com/1996-1073/17/23/5818variable pitch wind turbineinflow conditionstructural dynamic responsenumerical simulationwind tunnel experiments
spellingShingle Daorina Bao
Zhongyu Shi
Chengze Li
Aoxiang Jiang
Qingsong Han
Yongshui Luo
Shaohua Zhang
A Study on the Influence of Different Inflow Conditions on the Output Power and Dynamic Response Characteristics of a Variable Pitch Wind Turbine Structure
Energies
variable pitch wind turbine
inflow condition
structural dynamic response
numerical simulation
wind tunnel experiments
title A Study on the Influence of Different Inflow Conditions on the Output Power and Dynamic Response Characteristics of a Variable Pitch Wind Turbine Structure
title_full A Study on the Influence of Different Inflow Conditions on the Output Power and Dynamic Response Characteristics of a Variable Pitch Wind Turbine Structure
title_fullStr A Study on the Influence of Different Inflow Conditions on the Output Power and Dynamic Response Characteristics of a Variable Pitch Wind Turbine Structure
title_full_unstemmed A Study on the Influence of Different Inflow Conditions on the Output Power and Dynamic Response Characteristics of a Variable Pitch Wind Turbine Structure
title_short A Study on the Influence of Different Inflow Conditions on the Output Power and Dynamic Response Characteristics of a Variable Pitch Wind Turbine Structure
title_sort study on the influence of different inflow conditions on the output power and dynamic response characteristics of a variable pitch wind turbine structure
topic variable pitch wind turbine
inflow condition
structural dynamic response
numerical simulation
wind tunnel experiments
url https://www.mdpi.com/1996-1073/17/23/5818
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