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Experimental Analysis on Solar Powered Unmanned Aerial Vehicle: The design of Solar Plane. - Softcover

 
9783330090101: Experimental Analysis on Solar Powered Unmanned Aerial Vehicle: The design of Solar Plane.

Inhaltsangabe

In this project, by analyzing different airfoils the suitable airfoil which has less camber for solar cell placement was chosen by XFLR5 analysis. With this airfoil, the wing span and chord was decided according to the battery requirement. Then energy and power analysis was done theoretically to check the design feasibility, which gives a basic foundation in order to design a solar-powered UAV. Then the integration of solar cells on to the wing was performed by considering various factors such as the deflection, stability and circuit connectivity. Then the solar wing was tested and from the solar cells, more than the required power for the level flight has been obtained, which shows that with this power the plane can fly with only solar energy continuously for more than 6 hours. And for the designed prototype the thermodynamic analysis of solar PV cells was performed taking into account the effect of temperature along with the wind. Then finally the exergy analysis has been done in order to provide a physical basis for understanding, refining and predicting the variations in solar PV behavior.

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In this project, by analyzing different airfoils the suitable airfoil which has less camber for solar cell placement was chosen by XFLR5 analysis. With this airfoil, the wing span and chord was decided according to the battery requirement. Then energy and power analysis was done theoretically to check the design feasibility, which gives a basic foundation in order to design a solar-powered UAV. Then the integration of solar cells on to the wing was performed by considering various factors such as the deflection, stability and circuit connectivity. Then the solar wing was tested and from the solar cells, more than the required power for the level flight has been obtained, which shows that with this power the plane can fly with only solar energy continuously for more than 6 hours. And for the designed prototype the thermodynamic analysis of solar PV cells was performed taking into account the effect of temperature along with the wind. Then finally the exergy analysis has been done in order to provide a physical basis for understanding, refining and predicting the variations in solar PV behavior.

Biografía del autor

B.S Karthik has completed his Bachelor's degree in Mechanical Engineering from Vellore Institute of Technology, India in 2016. After that, he started working in IDMC company which is an energy audit and manufacturing company. In future, he was planning to do Master's in Renewable Energy Engineering in Germany to curtail the rising energy demands.

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B.S Karthik Reddy
ISBN 10: 3330090103 ISBN 13: 9783330090101
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Taschenbuch. Zustand: Neu. Neuware -In this project, by analyzing different airfoils the suitable airfoil which has less camber for solar cell placement was chosen by XFLR5 analysis. With this airfoil, the wing span and chord was decided according to the battery requirement. Then energy and power analysis was done theoretically to check the design feasibility, which gives a basic foundation in order to design a solar-powered UAV. Then the integration of solar cells on to the wing was performed by considering various factors such as the deflection, stability and circuit connectivity. Then the solar wing was tested and from the solar cells, more than the required power for the level flight has been obtained, which shows that with this power the plane can fly with only solar energy continuously for more than 6 hours. And for the designed prototype the thermodynamic analysis of solar PV cells was performed taking into account the effect of temperature along with the wind. Then finally the exergy analysis has been done in order to provide a physical basis for understanding, refining and predicting the variations in solar PV behavior.Books on Demand GmbH, Überseering 33, 22297 Hamburg 52 pp. Englisch. Artikel-Nr. 9783330090101

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