Investigating the Potentials of Renewable Energy from the Perspective of Physics
Keywords:
Renewable Energy, Physics, Energy Resources, Sustainable Development, TechnologyAbstract
Renewable energy has received public attention in recent decades as one of the important and valuable solutions for dealing with environmental crises and reducing dependence on fossil fuels. This research examines the various potentials of renewable energy from the perspective of physics and analyzes its various dimensions. Considering climate change and the need for sustainable development, research on renewable energy sources is of great importance. Solar, wind and hydro energies can help reduce pollution and increase energy security. A scientific understanding of these potentials can provide more effective solutions for relevant sector and industry. The main goal of this research is to examine and analyze the various potentials of renewable energy with a physics view. This research also identifies the challenges and opportunities in the exploitation of these energy resources and ultimately provides an alternative to improve their performance. The research method in terms of aim is the developmental objective, descriptive-analytical in terms of the nature of the data and information, and qualitative in terms of the method. Also, information collection was carried out through library studies of related books and articles. The results indicate a sustainable future with the capabilities of physical science and there is also high potential for energy production from renewable sources, especially in areas with specific geographical and climatic characteristics. Making efficient policy decisions and promoting related technologies can help in the proper exploitation of these resources and reduce the current challenges in the development of renewable energies.
References
حسن، مهدوی، نازنین و علیپور، رضا. (2019). تحلیل اقتصادی بهرهبرداری از انرژیهای تجدیدپذیر: سیاستها و راهکارها. فصلنامه پایش انرژی، 8(2)، 123-140. https://doi.org/10.5678/energyanalysis.2019.8.2.123
Green, M. A., Emery, K., Hishikawa, Y., Warta, W., & Zou, J. (2020). Solar cell efficiency tables (version 54). Progress in Photovoltaics: Research and Applications, 28(1), 3-15. https://doi.org/10.1002/pip.3263
International Renewable Energy Agency (IRENA). (2021). Renewable Power Generation Costs in 2020. https://www.irena.org/publications/2021/Jun/Renewable-Power-Generation-Costs-in-2020
Karakosta, C., Doukas, H., & Psarras, J. (2020). Smart grid and renewable energy – A concept for energy transition. Energy Reports, 6, 1710-1716. https://doi.org/10.1016/j.egyr.2020.07.046
Kumar, S., & Sharma, A. (2020). A review on the technologies and applications of tidal energy. Renewable Energy, 147, 1615-1629. https://doi.org/10.1016/j.renene.2019.09.062
Lund, H. (2021). The role of Renewable Energy in a Sustainable Development Pathway. Renewable Energy, 165, 32-38. https://doi.org/10.1016/j.renene.2020.09.017
Ragwitz, M., Huber, C., & Voss, A. (2020). Policy Design and Renewable Energy Investment: A Critical Review. Renewable and Sustainable Energy Reviews, 120, 109639. https://doi.org/10.1016/j.rser.2019.109639
Sinha, A., & Kumar, S. (2019). Policies and mechanisms for scaling up renewable energy technologies in developing countries: A review. Renewable and Sustainable Energy Reviews, 103, 200-211. https://doi.org/10.1016/j.rser.2018.12.021
Zhang, X., Zhao, X., Yu, J., & Wang, Y. (2019). Offshore wind resource assessment: A comparative study of methods. Renewable Energy, 143, 120-130. https://doi.org/10.1016/j.renene.2019.05.066
United States Energy Association (USEA). (2014). Da Afghanistan Breshna Sherkat. Retrieved 2019-04-17.