THEORETICAL ASPECTS AND NUMERICAL MODELLING FOR LONG TERM PREDICTION OF ABL AND WIND DISTRIBUTION IN POWER FARM

The paper is structured in seven parts, the last for few conclusions and finally some references. It is based on concrete measurements and observation during around 2 years. First is presented an introduction of the actual situation. In part two are mentioned the methods and hypotheses in evalu...

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Main Authors: RADULESCU V., DUMITRU S.
Format: Article
Language:English
Published: University of Oradea 2015-03-01
Series:Journal of Sustainable Energy
Subjects:
Online Access:http://www.energy-cie.ro/archives/2015/nr_1/v6-n1-3.pdf
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spelling doaj-18c3a944ecb144328e408814c44142112020-11-25T01:32:06ZengUniversity of OradeaJournal of Sustainable Energy2067-55342067-55342015-03-01611722THEORETICAL ASPECTS AND NUMERICAL MODELLING FOR LONG TERM PREDICTION OF ABL AND WIND DISTRIBUTION IN POWER FARMRADULESCU V.0DUMITRU S.1University Polytechnic of BucharestINCDMTM, BucharestThe paper is structured in seven parts, the last for few conclusions and finally some references. It is based on concrete measurements and observation during around 2 years. First is presented an introduction of the actual situation. In part two are mentioned the methods and hypotheses in evaluation of wind velocity distribution in boundary layers for atmospheric air, taking into account the roughness of ground surfaces. It is mentioned a concrete area, south part of Moldova. In third part is presented a solution for the geodetic model and finally are selected the altimetry solution. In chapter four is determined the influence of air density, temperature and pressure on wind turbine functioning. In the next chapters are presented the numerical model with special boundary conditions, taking into account different value of roughness and finally the obtained results. It is also estimated velocity variation during day-night. Finally is presented the vertical distribution of horizontal wind velocity for a wind farm, obviously important due the power of turbine (around 3 MW each one). Some conclusions and references are also mentioned.http://www.energy-cie.ro/archives/2015/nr_1/v6-n1-3.pdfwind farminverse flowefficiencyaltimetry modelgeodetic modelABL-Atmospheric Boundary Layerground roughnessBL-boundary layer
collection DOAJ
language English
format Article
sources DOAJ
author RADULESCU V.
DUMITRU S.
spellingShingle RADULESCU V.
DUMITRU S.
THEORETICAL ASPECTS AND NUMERICAL MODELLING FOR LONG TERM PREDICTION OF ABL AND WIND DISTRIBUTION IN POWER FARM
Journal of Sustainable Energy
wind farm
inverse flow
efficiency
altimetry model
geodetic model
ABL-Atmospheric Boundary Layer
ground roughness
BL-boundary layer
author_facet RADULESCU V.
DUMITRU S.
author_sort RADULESCU V.
title THEORETICAL ASPECTS AND NUMERICAL MODELLING FOR LONG TERM PREDICTION OF ABL AND WIND DISTRIBUTION IN POWER FARM
title_short THEORETICAL ASPECTS AND NUMERICAL MODELLING FOR LONG TERM PREDICTION OF ABL AND WIND DISTRIBUTION IN POWER FARM
title_full THEORETICAL ASPECTS AND NUMERICAL MODELLING FOR LONG TERM PREDICTION OF ABL AND WIND DISTRIBUTION IN POWER FARM
title_fullStr THEORETICAL ASPECTS AND NUMERICAL MODELLING FOR LONG TERM PREDICTION OF ABL AND WIND DISTRIBUTION IN POWER FARM
title_full_unstemmed THEORETICAL ASPECTS AND NUMERICAL MODELLING FOR LONG TERM PREDICTION OF ABL AND WIND DISTRIBUTION IN POWER FARM
title_sort theoretical aspects and numerical modelling for long term prediction of abl and wind distribution in power farm
publisher University of Oradea
series Journal of Sustainable Energy
issn 2067-5534
2067-5534
publishDate 2015-03-01
description The paper is structured in seven parts, the last for few conclusions and finally some references. It is based on concrete measurements and observation during around 2 years. First is presented an introduction of the actual situation. In part two are mentioned the methods and hypotheses in evaluation of wind velocity distribution in boundary layers for atmospheric air, taking into account the roughness of ground surfaces. It is mentioned a concrete area, south part of Moldova. In third part is presented a solution for the geodetic model and finally are selected the altimetry solution. In chapter four is determined the influence of air density, temperature and pressure on wind turbine functioning. In the next chapters are presented the numerical model with special boundary conditions, taking into account different value of roughness and finally the obtained results. It is also estimated velocity variation during day-night. Finally is presented the vertical distribution of horizontal wind velocity for a wind farm, obviously important due the power of turbine (around 3 MW each one). Some conclusions and references are also mentioned.
topic wind farm
inverse flow
efficiency
altimetry model
geodetic model
ABL-Atmospheric Boundary Layer
ground roughness
BL-boundary layer
url http://www.energy-cie.ro/archives/2015/nr_1/v6-n1-3.pdf
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AT dumitrus theoreticalaspectsandnumericalmodellingforlongtermpredictionofablandwinddistributioninpowerfarm
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