Opening book details…
Can I read Analysis of the Variability of Low-carbon Energy Sources, Nuclear Technology and Renewable Energy Sources, in Meeting Electricity Demand on EtoBox?
Analysis of the Variability of Low-carbon Energy Sources, Nuclear Technology and Renewable Energy Sources, in Meeting Electricity Demand by Spiru Paraschiv is a book available to read on EtoBox.
What is Analysis of the Variability of Low-carbon Energy Sources, Nuclear Technology and Renewable Energy Sources, in Meeting Electricity Demand about?
Climate change, caused by an increase in greenhouse gas emissions such as carbon dioxide (CO2), has required the use of renewable energy sources. This study analyzes the structure of Romania’s electricity sector in 2017, specifically the share of renewable energy sources in the sector’s mix. The electricity sector uses both conventional (coal, hydrocarbons, and nuclear) and renewable energy sources (hydro, wind, photovoltaic and biomass). According to the study, the electricity sector in 2017 is still heavily reliant on conventional sources, which account for 64% of total energy consumption, while renewable energy sources account for 36%. Nuclear energy has the most stable operation of all the sources studied, but the power variation is small, with this technology operating at nearly constant parameters. However, nuclear power can experience outages due to the availability of the cooling source or the flow of cooling water in some situations. Nuclear energy had a maximum coverage of 30.66% of electricity consumption in 2017 and an average annual value of 19.53%. Renewable energy (wind energy and photovoltaic energy) has very large fluctuations because it is completely dependent on
- Author
- Spiru Paraschiv
- Publisher
- Elsevier Ltd
- Language
- EN
More by Spiru Paraschiv
Browse all works by Spiru Paraschiv
Similar books
- The Renewable Energy Sources : for Fuels and Electricity — Thomas B. Johansson; Henry Kelly; Amulya K.N. Reddy; Alan Douglas Poole; Richard L. Bain; Al Cavallo; Eric D. Larson; Isais C. Macedo; Allen M. Barnett; Eldon Boes; Sigurd Wagner; Charles E. Wyman; Ken Zweibel; Joan M. Ogden; Susan M. Hock; Richard Dive; David Kearney; Pascal de Laquil; Carl J. Weinberg; Don R. Smith; Joseph J. Iannucci; Don J. Stevens; Gautum Dutt; Martin Green; Adriaan C. Van Haandel; David E. Carlson; Jos Roberto Moreira; Lourival C. Monaco; Jos Goldemberg; Niels I. Meyer; Michael J. Grubb; Joachim Nitsch; H.S. Mukunda; P. Rajabapaaiah; N.H. Ravindranath; S. Dasappa; S. Jayakumar; Civis G. Palmerini; Gatze Lettinga; Antonio Luque; Roger Price; Frank Rosillo Calle; James E. Cavanaugh; Jeremy Woods; John H. Clarke; Richard Diver; Kay Firor; Michael Geyer; U. Shrinivasa; Roberto Vigotti; Norman D. Hinman (1993)
- Powering the Low-carbon Economy : the Once and Future Roles of Renewable Energy and Natural Gas — Saya Kitasei; Lisa Mastny; Worldwatch Institute (2010)
- Contribution of Renewable Energy (Hydro, Wind, Solar and Biomass) to Decarbonization and Transformation of the Electricity Generation Sector for Sustainable Development — Lizica Simona Paraschiv,Spiru Paraschiv
- Assessment of Renewable Energy Generated by a Hybrid System Based on Wind, Hydro, Solar, and Biomass Sources for Decarbonizing the Energy Sector and Achieving a Sustainable Energy Transition — Paraschiv Spiru
- Integration of Renewable Sources of Energy — Felix A. Farret; M. Godoy Simoes (2017)
- Energy 2050 : Making the Transition to a Secure Low-Carbon Energy System — edited by Jim Skea, Paul Ekins, and Mark Winskel (2011)