Assessment of the potential implications of a 1.5 °C versus higher global temperature rise for the Afobaka hydropower scheme in Suriname

Author:

Donk PeterORCID,Van Uytven Els,Willems Patrick,Taylor Michael A.

Publisher

Springer Science and Business Media LLC

Subject

Global and Planetary Change

Reference41 articles.

1. Benjamin L, Thomas A (2016) 1.5 to stay alive?: AOSIS and the long term temperature goal in the Paris Agreement. IUCN Acad Environ law e-J 7:122–129 http://www.iucnael.org/en/e-journal

2. Berga L (2013) Floods and Climate Change in Europe. Proceedings, HYDRO 2013: Promoting the Versatile Role of Hydro 7–9 October 2013, Innsbruck, Austria. http://www.hydropower-dams.com/proceedings-overview.php?c_id=164

3. Boehlert B, Strzepek KM, Gebretsadik Y, Swanson R, McCluskey A, Neumann JE, McFarland J, Martinich J (2016) Climate change impacts and greenhouse gas mitigation effects on U.S. hydropower generation. Appl Energy 183:511–519. https://doi.org/10.1016/j.apenergy.2016.09.054

4. Bulu A (2017) Hydroelectric Power Plants - Lecture notes IV - Chapter 4. Istanbul Technical University, College of Civil Engineering. http://web.itu.edu.tr/~bulu/hyroelectic_power_uk.htm ; http://web.itu.edu.tr/~bulu/hyroelectic_power_files/lecture_notes_04.pdf . Accessed July 2017

5. Chow VT, Maidment DR, Mays LW (1988) Applied hydrology. McGraw-Hill Book Company, New York 572p

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