Honors Thesis Work In Renewable Energy For An Undergraduate Student


Determining average energy usage of a home in Erie over one year



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Determining average energy usage of a home in Erie over one year 
 
The student was introduced to the concept of a literature search in this portion of the thesis. The 
faculty advisor had already uncovered a number of references dealing with the development of a 
hybrid solar/wind energy system 
[2-6]
. The student could then use the results of the literature 
search to analyze the papers and determine which of the references provided information about 
residential energy use. The student decided that 
[4]
provided a preliminary baseline for the 
amount of energy usage, although the home selected would not be in the Great Lakes region. As 
will be discussed later, the value of approximately 12,000 kWh provided in 
[4]
would need to be 
modified based on cost constraints.
Identifying the amount of solar and wind energy available in Erie during the year 
 
The student proceeded to obtain from the National Oceanic and Atmospheric Administration 
(NOAA) website 
[1]
both solar and wind data for a five year period, from September 1996 
P
age 8.640.2


Session 2433 
“Proceedings of the 2003 American Society for Engineering Education Annual 
Conference & Exposition Copyright © 2003, American Society for Engineering Education” 
through September 2001. The solar data contained on a daily basis the number of minutes of 
sunlight. Daily data for Erie, PA wasn’t available on the website, so the student instead used 
data from a nearby city (Cleveland, OH, 100 miles away to the west). The student also looked at 
the daily sunlight data for Buffalo, NY, 90 miles away to the east, and found only minor 
discrepancies between the two cities. Therefore, the student felt comfortable applying sunlight 
data from Cleveland, OH to Erie, PA.
The wind data contained on a daily basis the average wind speed in miles per hour. The student 
was then able to build a spreadsheet that took the daily sun and wind information and, based on 
the size of the solar panel and wind turbine, could calculate the kWh energy available. By 
averaging the sum of the solar and wind energy over a 5-year period, the student was able to 
determine the average yearly kWh generated by the combined solar and wind energy.
To determine the amount of solar energy being generated, the student looked at a number of 
different manufacturers of solar cells, and decided on 
[7]
to calculate the amount of power 
generated based on the amount of sunlight and the area of the solar panel. Multiplying the power 
available by the duration of sunlight yielded the energy available. A derating factor was also 
applied to account for the reduced sunlight at sunrise and sunset. Figure 1 shows the power 
produced by a solar panel with a surface area of 15,000 in
2
over the five year period from 
September 1996 – September 2001. As can be seen in Figure 1, the amount of energy being 
generated by the solar panel is highest during the summer months. 
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