Solar Energy Fundamentals and Modeling Techniques
Solar irradiation is the fundamental initiator of renewable energy alternatives, such as wind, wave, hydrogen and biomass energy sources. Solar Energy Fundamentals and Modeling Techniques presents methods for the quantitative determination of the amount of solar irradiation incident on a surface on...
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2017
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oai:112.137.131.14:VNU_123-301562020-05-13T01:41:34Z Solar Energy Fundamentals and Modeling Techniques Şen, Zekai Engineering Environment Climate Change and Renewable Energy Solar irradiation is the fundamental initiator of renewable energy alternatives, such as wind, wave, hydrogen and biomass energy sources. Solar Energy Fundamentals and Modeling Techniques presents methods for the quantitative determination of the amount of solar irradiation incident on a surface on the Earth. The book collects together material from the current literature in atmospheric environmental sciences, climate change research, meteorology, engineering and renewable energy, liberally illustrated by diagrams and worked examples. Solar Energy Fundamentals and Modeling Techniques provides a sound background to the underlying physical principles of solar irradiation and energy, with explanations as to how these can be modeled and applied in solar energy projects and design. Bringing together information not found elsewhere in a single source, the book includes an innovative exposition of expert system methodologies used in the domain of solar irradiation and energy. In addition to methodologies such as statistics and geo-statistics (regionalized variables), new modeling approaches such as fuzzy logic inference, artificial neural network (ANN) and genetic algorithm techniques are introduced, along with both classical Kriging and newly developed techniques for spatial solar irradiation modeling. 2017-04-18T00:21:16Z 2017-04-18T00:21:16Z 2008 Book 978-1-84800-133-6 http://repository.vnu.edu.vn/handle/VNU_123/30156 en © 2008 Springer-Verlag London Limited 280 p. application/pdf Springer |
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Engineering Environment Climate Change and Renewable Energy |
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Engineering Environment Climate Change and Renewable Energy Şen, Zekai Solar Energy Fundamentals and Modeling Techniques |
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Solar irradiation is the fundamental initiator of renewable energy alternatives, such as wind, wave, hydrogen and biomass energy sources. Solar Energy Fundamentals and Modeling Techniques presents methods for the quantitative determination of the amount of solar irradiation incident on a surface on the Earth. The book collects together material from the current literature in atmospheric environmental sciences, climate change research, meteorology, engineering and renewable energy, liberally illustrated by diagrams and worked examples.
Solar Energy Fundamentals and Modeling Techniques provides a sound background to the underlying physical principles of solar irradiation and energy, with explanations as to how these can be modeled and applied in solar energy projects and design. Bringing together information not found elsewhere in a single source, the book includes an innovative exposition of expert system methodologies used in the domain of solar irradiation and energy. In addition to methodologies such as statistics and geo-statistics (regionalized variables), new modeling approaches such as fuzzy logic inference, artificial neural network (ANN) and genetic algorithm techniques are introduced, along with both classical Kriging and newly developed techniques for spatial solar irradiation modeling. |
format |
Book |
author |
Şen, Zekai |
author_facet |
Şen, Zekai |
author_sort |
Şen, Zekai |
title |
Solar Energy Fundamentals and Modeling Techniques |
title_short |
Solar Energy Fundamentals and Modeling Techniques |
title_full |
Solar Energy Fundamentals and Modeling Techniques |
title_fullStr |
Solar Energy Fundamentals and Modeling Techniques |
title_full_unstemmed |
Solar Energy Fundamentals and Modeling Techniques |
title_sort |
solar energy fundamentals and modeling techniques |
publisher |
Springer |
publishDate |
2017 |
url |
http://repository.vnu.edu.vn/handle/VNU_123/30156 |
_version_ |
1680964410238042112 |