Analysis of a hydrostatic drive wind turbine for improved annual energy production

This paper presents an analysis on ways to improve the annual energy production (AEP) of a wind turbine utilizing a drivetrain that operates based on the hydrostatic transmission. The system configuration of such a drivetrain is explained in details and a comparison of operation and characteristics...

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Main Authors: Majid Deldar, Afshin Izadian, Sohel Anwar
Format: Article
Language:English
Published: AIMS Press 2018-10-01
Series:AIMS Energy
Subjects:
Online Access:http://www.aimspress.com/article/10.3934/energy.2018.6.908/fulltext.html
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spelling doaj-1621a4b1976e4d078558dad1f8e0b3612020-11-25T02:47:32ZengAIMS PressAIMS Energy2333-83262333-83342018-10-016690892510.3934/energy.2018.6.908energy-06-06-908Analysis of a hydrostatic drive wind turbine for improved annual energy productionMajid Deldar0Afshin Izadian1Sohel Anwar21 Meggitt Control Systems, Los Angeles, CA 91605, USA2 Energy Systems and Power Electronics Lab, Purdue School of Engineering and Technology, Indianapolis, Indiana, USA3 Department of Mechanical and Energy Engineering, Purdue School of Engineering and Technology Indianapolis, Indiana, USAThis paper presents an analysis on ways to improve the annual energy production (AEP) of a wind turbine utilizing a drivetrain that operates based on the hydrostatic transmission. The system configuration of such a drivetrain is explained in details and a comparison of operation and characteristics with existing drivetrains is provided. AEP was estimated for these configurations through appropriate dynamic modeling and operational efficiency optimization. Optimal selection of a number of design variables and system parameters contributed to the improvements in the AEP. Findings of this study demonstrate that the proposed hydrostatic drivetrain improves the AEP of a 750 kW turbine by up to +8% when compared with a geared wind turbine. The AEP improvements of the hydrostatic drive wind turbine were more than 10% for a 1.5 MW system over geared configuration. It is also demonstrated that the efficiency of power generation can be improved under various wind speeds. The suitable selection of synchronous speed of the generator directly improves the efficiency of operation by up to 35% at low wind speeds. An efficiency improvement was also observed under higher operating pressures and longer turbine blades.http://www.aimspress.com/article/10.3934/energy.2018.6.908/fulltext.htmlhydrostatic drivetrain| governing equations| efficiency enhancement| system characteristics| annual energy production
collection DOAJ
language English
format Article
sources DOAJ
author Majid Deldar
Afshin Izadian
Sohel Anwar
spellingShingle Majid Deldar
Afshin Izadian
Sohel Anwar
Analysis of a hydrostatic drive wind turbine for improved annual energy production
AIMS Energy
hydrostatic drivetrain| governing equations| efficiency enhancement| system characteristics| annual energy production
author_facet Majid Deldar
Afshin Izadian
Sohel Anwar
author_sort Majid Deldar
title Analysis of a hydrostatic drive wind turbine for improved annual energy production
title_short Analysis of a hydrostatic drive wind turbine for improved annual energy production
title_full Analysis of a hydrostatic drive wind turbine for improved annual energy production
title_fullStr Analysis of a hydrostatic drive wind turbine for improved annual energy production
title_full_unstemmed Analysis of a hydrostatic drive wind turbine for improved annual energy production
title_sort analysis of a hydrostatic drive wind turbine for improved annual energy production
publisher AIMS Press
series AIMS Energy
issn 2333-8326
2333-8334
publishDate 2018-10-01
description This paper presents an analysis on ways to improve the annual energy production (AEP) of a wind turbine utilizing a drivetrain that operates based on the hydrostatic transmission. The system configuration of such a drivetrain is explained in details and a comparison of operation and characteristics with existing drivetrains is provided. AEP was estimated for these configurations through appropriate dynamic modeling and operational efficiency optimization. Optimal selection of a number of design variables and system parameters contributed to the improvements in the AEP. Findings of this study demonstrate that the proposed hydrostatic drivetrain improves the AEP of a 750 kW turbine by up to +8% when compared with a geared wind turbine. The AEP improvements of the hydrostatic drive wind turbine were more than 10% for a 1.5 MW system over geared configuration. It is also demonstrated that the efficiency of power generation can be improved under various wind speeds. The suitable selection of synchronous speed of the generator directly improves the efficiency of operation by up to 35% at low wind speeds. An efficiency improvement was also observed under higher operating pressures and longer turbine blades.
topic hydrostatic drivetrain| governing equations| efficiency enhancement| system characteristics| annual energy production
url http://www.aimspress.com/article/10.3934/energy.2018.6.908/fulltext.html
work_keys_str_mv AT majiddeldar analysisofahydrostaticdrivewindturbineforimprovedannualenergyproduction
AT afshinizadian analysisofahydrostaticdrivewindturbineforimprovedannualenergyproduction
AT sohelanwar analysisofahydrostaticdrivewindturbineforimprovedannualenergyproduction
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