Honors Thesis Work In Renewable Energy For An Undergraduate Student



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honors-thesis-work-in-renewable-energy-for-an-undergraduate-student

Day
kWh Generated
Figure 1. Calculated daily energy generated from a solar panel in Erie, PA 
To determine the amount of wind energy generated, the student used information from Patel 
[8]
to 
calculate the amount of power generated based on the size of the turbine blades and the average 
wind speed provided for a given day. The equation for the power generated was found from: 
P = 0.5
ρ
AV
3
, where 
P = power generated, in Watts 
P
age 8.640.3


Session 2433 
“Proceedings of the 2003 American Society for Engineering Education Annual 
Conference & Exposition Copyright © 2003, American Society for Engineering Education” 
ρ
= air density, in kg/m
3
A = area swept by the rotor blades, in m
2
V= velocity of the air, in m/s 
Using a 24-hour period, the student was able to provide the kWh available for that day.
Constraints were applied to the data. For example, the minimum wind speed for the day needed 
to be at least 8 mi/h for the wind turbine to supply power. In addition, at very high wind speeds 
the wind generator can be damaged 
[4]
and therefore needs to be reoriented away from the wind.
Therefore, a limit was placed on the maximum amount of energy that could be supplied in any 
given day from the wind generator. Figure 2 provides the power produced by a wind turbine 
over the five year period from September 1996 – September 2001. The wind turbine chosen 
was a Bergey 1.5kW wind turbine 
[9]
with a swept blade area of 8.04m
2
and an assumed air 
density of 1.225 kg/m
3 [8]
. As seen in Figure 2, the wind energy is maximized in Erie during the 
winter months.
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9/13/1996
3/13/1997
9/13/1997
3/13/1998
9/13/1998
3/13/1999
9/13/1999
3/13/2000
9/13/2000
3/13/2001

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