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Title:
Razvoj lopatice 50 kilovatne vetrne turbine
Authors:
ID
Podgrajšek, Simon
(
Author
)
ID
Pehan, Stanislav
(
Mentor
)
More about this mentor...
Files:
UNI_Podgrajsek_Simon_2013.pdf
(3,08 MB)
MD5: 8413BCB600B1B5F76C0A566ADBB56A56
PID:
20.500.12556/dkum/33d6715c-5c58-4ecd-85a9-0cbfbc524423
Language:
Slovenian
Work type:
Undergraduate thesis
Typology:
2.11 - Undergraduate Thesis
Organization:
FS - Faculty of Mechanical Engineering
Abstract:
V diplomskem delu je predstavljen razvoj lopatice vetrne turbine. Lopatica vetrne turbine je del rotorja vetrne turbine, ki vetru zaradi svoje oblike odvzema energijo, katero kasneje izkoriščamo kot električno energijo. Razviti je potrebno lopatico vetrne turbine, katera bo imela boljši izkoristek oz. bo proizvedla več moči kot njena predhodnica. Na začetku naloge so opisane glavne lastnosti in metode ter napotki za razvoj učinkovite lopatice vetrne turbine. V nadaljevanju je prikazan postopek izračuna in dimenzioniranja nove lopatice, ki se konča s primerjavo rezultatov obstoječe lopatice in nove lopatice. Na koncu je geometrija nove lopatice prikazana z modelom v programskem paketu SolidWorks.
Keywords:
vetrna turbina
,
lopatica
,
aerodinamični profil
Place of publishing:
Maribor
Publisher:
[S. Podgrajšek]
Year of publishing:
2013
PID:
20.500.12556/DKUM-40158
UDC:
621.548.4-11(043.2)
COBISS.SI-ID:
17374998
NUK URN:
URN:SI:UM:DK:VMVP7OUW
Publication date in DKUM:
12.06.2013
Views:
2460
Downloads:
171
Metadata:
Categories:
KTFMB - FS
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Secondary language
Language:
English
Title:
Design of 50 kilowatt wind turbine blade
Abstract:
The diploma thesis presents the development of wind turbine blade. The wind turbine blade is a part of the rotor for wind turbine which exploits the wind energy due to its design that is later generated into the electricity. The wind turbine blade, having a better efficiency, namely one that will produce more power than its predecessor, needs to be developed. The main characteristics, methods and instructions how to develop an efficient wind turbine blade are described in the first part of the thesis. Furthermore, the method of calculation and dimensioning of the new blade is presented and concluded by a comparison of the results made between the existing and the new blade. In the last part of thesis, the geometry of new blade is demonstrated together with a model in the SolidWorks software package.
Keywords:
wind turbine
,
wind turbine blade
,
aerodynamic profile
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