Streamlines based visualization of air flow in clouds

The most important functionality of the hail suppression information system in Serbia is to enable timely and reliable detection of the formation of hail-containing clouds. Improvement of this functionality can be achieved by adequate visualization of air flow (wind) inside the cloud system...

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Main Authors: Kovačević Marko M., Mihajlović Vladan T., Rančić Dejan D.
Format: Article
Language:English
Published: Faculty of Technical Sciences in Cacak 2012-01-01
Series:Serbian Journal of Electrical Engineering
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/1451-4869/2012/1451-48691201043K.pdf
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spelling doaj-ab8e1a0bdcb74861b2285cc79b24eb8c2020-11-24T21:02:09ZengFaculty of Technical Sciences in CacakSerbian Journal of Electrical Engineering1451-48692217-71832012-01-0191435210.2298/SJEE1201043K1451-48691201043KStreamlines based visualization of air flow in cloudsKovačević Marko M.0Mihajlović Vladan T.1Rančić Dejan D.2Faculty of Electronic Engineering, NišFaculty of Electronic Engineering, NišFaculty of Electronic Engineering, NišThe most important functionality of the hail suppression information system in Serbia is to enable timely and reliable detection of the formation of hail-containing clouds. Improvement of this functionality can be achieved by adequate visualization of air flow (wind) inside the cloud system. This was the motivation for implementing a 2D steady vector field visualization method, based on the streamlines method. The choice of this method is dictated by the requirements for the given appliance: efficiency (a crucial requirement in hail suppression systems), generality of use, an accurate and easily understandable display. By implementing algorithms for streamlines seeding strategy and streamlines points distance control, the infinite loop problem that occurs due to the existence of field vortices is eliminated and evenly spaced streamlines are obtained. For analyzing the influence of the implemented method’s parameters on performance and image quality, a framework for visualization is developed. The implemented method is successfully applied for visualization of data obtained from meteorological radars.http://www.doiserbia.nb.rs/img/doi/1451-4869/2012/1451-48691201043K.pdfstreamlinesseeding strategydistance controlvisualizationmeteorological radars
collection DOAJ
language English
format Article
sources DOAJ
author Kovačević Marko M.
Mihajlović Vladan T.
Rančić Dejan D.
spellingShingle Kovačević Marko M.
Mihajlović Vladan T.
Rančić Dejan D.
Streamlines based visualization of air flow in clouds
Serbian Journal of Electrical Engineering
streamlines
seeding strategy
distance control
visualization
meteorological radars
author_facet Kovačević Marko M.
Mihajlović Vladan T.
Rančić Dejan D.
author_sort Kovačević Marko M.
title Streamlines based visualization of air flow in clouds
title_short Streamlines based visualization of air flow in clouds
title_full Streamlines based visualization of air flow in clouds
title_fullStr Streamlines based visualization of air flow in clouds
title_full_unstemmed Streamlines based visualization of air flow in clouds
title_sort streamlines based visualization of air flow in clouds
publisher Faculty of Technical Sciences in Cacak
series Serbian Journal of Electrical Engineering
issn 1451-4869
2217-7183
publishDate 2012-01-01
description The most important functionality of the hail suppression information system in Serbia is to enable timely and reliable detection of the formation of hail-containing clouds. Improvement of this functionality can be achieved by adequate visualization of air flow (wind) inside the cloud system. This was the motivation for implementing a 2D steady vector field visualization method, based on the streamlines method. The choice of this method is dictated by the requirements for the given appliance: efficiency (a crucial requirement in hail suppression systems), generality of use, an accurate and easily understandable display. By implementing algorithms for streamlines seeding strategy and streamlines points distance control, the infinite loop problem that occurs due to the existence of field vortices is eliminated and evenly spaced streamlines are obtained. For analyzing the influence of the implemented method’s parameters on performance and image quality, a framework for visualization is developed. The implemented method is successfully applied for visualization of data obtained from meteorological radars.
topic streamlines
seeding strategy
distance control
visualization
meteorological radars
url http://www.doiserbia.nb.rs/img/doi/1451-4869/2012/1451-48691201043K.pdf
work_keys_str_mv AT kovacevicmarkom streamlinesbasedvisualizationofairflowinclouds
AT mihajlovicvladant streamlinesbasedvisualizationofairflowinclouds
AT rancicdejand streamlinesbasedvisualizationofairflowinclouds
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