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  3. Faculty of Engineering - Department of Electrical, Electronic and Computer Engineering
  4. Electrical, Electronic and Computer Engineering - Doctoral Degree
  5. Thermal electric solar power conversion panel development
 
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Thermal electric solar power conversion panel development

Author(s)
Kamanzi, Janvier
Date Issued
2017
Type
Thesis
Publisher
Cape Peninsula University of Technology
Abstract
The world has been experiencing energy-related problems following pressuring energy demands which go along with the global economy growth. These problems can be phrased in three paradoxical statements: Firstly, in spite of a massive and costless solar energy, global unprecedented energy crisis has prevailed, resulting in skyrocketing costs. Secondly, though the sun releases a clean energy, yet conventional plants are mainly being run on unclean energy sources despite their part in the climate changes and global warming. Thirdly, while a negligible percentage of the solar energy is used for power generation purposes, it is not optimally exploited since more than its half is wasted in the form of heat which contributes to lowering efficiency of solar cells and causes their premature degradation and anticipated ageing. The research is geared at addressing the issue related to unsatisfactory efficiencies and anticipated ageing of solar modules.
The methodology adopted to achieve the research aim consisted of a literature survey which in turn inspired the devising of a high-efficiency novel thermal electric solar power panel. Through an in-depth overview, the literature survey outlined the rationale of the research interest, factors affecting the performance of PVs as well as existing strategies towards addressing spotted shortcomings.
While photovoltaic (PV) panels could be identified as the most reliable platform for sunlight-to-electricity conversion, they exhibit a shortcoming in terms of following the sun so as to maximize exposure to sunlight which negatively affects PVs’ efficiencies in one hand. On the other hand, the inability of solar cells to reflect the unusable heat energy present in the sunlight poses as a lifespan threat. Strategies and techniques in place to track the sun and keep PVs in nominal operational temperatures were therefore reviewed.
Additional information
Thesis (DTech (Engineering))--Cape Peninsula University of Technology, 2017.
Subjects

Solar heating

Thermoelectricity

Renewable energy sour...

Energy development

Solar cells -- Design...

Photovoltaic power ge...

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210066849-Kamanzi-Janvier-D.Eng-Electrical-Engineering-Eng-2017.pdf

Description
Thesis
Size

4.51 MB

Format

Adobe PDF

Checksum

(MD5):2a82a274c334e669cf9118abe04b99b0

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