Computational aerodynamics study on neo-ptero micro unmanned aerial vehicle
This work aims to characterize the lift (CL) and drag (CD) coefficient distributions on the current Neo-Ptero micro-UAV prototype. A CLanalysis on Neo-Ptero shows that the model has a promising CLperformance throughout the α increment. For every 2° angle of attack increment, the model can generate a...
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Joint Journal of Novel Carbon Resource Sciences and Green Asia Strategy
2021
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2-s2.0-85110657118 Ismail N.I.; Sharudin H.; Mahadzir M.M.; Ali Z.M.; Shariffuddin A.A.; Kamel N.I. Computational aerodynamics study on neo-ptero micro unmanned aerial vehicle 2021 Evergreen 8 2 10.5109/4480726 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85110657118&doi=10.5109%2f4480726&partnerID=40&md5=32cbe4bb78befc7460120759505dc32c This work aims to characterize the lift (CL) and drag (CD) coefficient distributions on the current Neo-Ptero micro-UAV prototype. A CLanalysis on Neo-Ptero shows that the model has a promising CLperformance throughout the α increment. For every 2° angle of attack increment, the model can generate approximately 22% increment in CLmagnitude. Neo-Ptero also has a decent magnitude in maximum lift coefficient and stall angle at 1.24 and 18°, respectively. CLcomparison works reveal that Neo-Ptero performs better than the other micro-UAV model produce by Ming from National University of Singapore (NUS) and also Serindit (produced by UAV team from University Riau, Indonesia) particularly in terms of α range and CLmaxmagnitudes. However, Neo-Ptero suffers from severe CDgeneration by producing an average of 23.8% rise in CDmagnitude for every 2° angle of attack increment. A CDcomparison study in performance reveals that compared with other micro-UAV models, Neo-Ptero induces at least 13.2% and 5% larger CDmagnitude and CDincrement, respectively. © 2021 Novel Carbon Resource Sciences. All rights reserved. Joint Journal of Novel Carbon Resource Sciences and Green Asia Strategy 21890420 English Article All Open Access; Gold Open Access |
author |
Ismail N.I.; Sharudin H.; Mahadzir M.M.; Ali Z.M.; Shariffuddin A.A.; Kamel N.I. |
spellingShingle |
Ismail N.I.; Sharudin H.; Mahadzir M.M.; Ali Z.M.; Shariffuddin A.A.; Kamel N.I. Computational aerodynamics study on neo-ptero micro unmanned aerial vehicle |
author_facet |
Ismail N.I.; Sharudin H.; Mahadzir M.M.; Ali Z.M.; Shariffuddin A.A.; Kamel N.I. |
author_sort |
Ismail N.I.; Sharudin H.; Mahadzir M.M.; Ali Z.M.; Shariffuddin A.A.; Kamel N.I. |
title |
Computational aerodynamics study on neo-ptero micro unmanned aerial vehicle |
title_short |
Computational aerodynamics study on neo-ptero micro unmanned aerial vehicle |
title_full |
Computational aerodynamics study on neo-ptero micro unmanned aerial vehicle |
title_fullStr |
Computational aerodynamics study on neo-ptero micro unmanned aerial vehicle |
title_full_unstemmed |
Computational aerodynamics study on neo-ptero micro unmanned aerial vehicle |
title_sort |
Computational aerodynamics study on neo-ptero micro unmanned aerial vehicle |
publishDate |
2021 |
container_title |
Evergreen |
container_volume |
8 |
container_issue |
2 |
doi_str_mv |
10.5109/4480726 |
url |
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85110657118&doi=10.5109%2f4480726&partnerID=40&md5=32cbe4bb78befc7460120759505dc32c |
description |
This work aims to characterize the lift (CL) and drag (CD) coefficient distributions on the current Neo-Ptero micro-UAV prototype. A CLanalysis on Neo-Ptero shows that the model has a promising CLperformance throughout the α increment. For every 2° angle of attack increment, the model can generate approximately 22% increment in CLmagnitude. Neo-Ptero also has a decent magnitude in maximum lift coefficient and stall angle at 1.24 and 18°, respectively. CLcomparison works reveal that Neo-Ptero performs better than the other micro-UAV model produce by Ming from National University of Singapore (NUS) and also Serindit (produced by UAV team from University Riau, Indonesia) particularly in terms of α range and CLmaxmagnitudes. However, Neo-Ptero suffers from severe CDgeneration by producing an average of 23.8% rise in CDmagnitude for every 2° angle of attack increment. A CDcomparison study in performance reveals that compared with other micro-UAV models, Neo-Ptero induces at least 13.2% and 5% larger CDmagnitude and CDincrement, respectively. © 2021 Novel Carbon Resource Sciences. All rights reserved. |
publisher |
Joint Journal of Novel Carbon Resource Sciences and Green Asia Strategy |
issn |
21890420 |
language |
English |
format |
Article |
accesstype |
All Open Access; Gold Open Access |
record_format |
scopus |
collection |
Scopus |
_version_ |
1809677893495685120 |