Impact of Climate Change on the Thermoeconomic Performance of Binary-Cycle Geothermal Power Plants

Author:

Blecich Paolo1ORCID,Wolf Igor1ORCID,Senčić Tomislav1ORCID,Bonefačić Igor1

Affiliation:

1. Faculty of Engineering, University of Rijeka, 51000 Rijeka, Croatia

Publisher

MDPI

Reference36 articles.

1. Sanyal, S.K., and Enedy, S.K. (February, January 31). Fifty Years of Power Generation at the Geysers Geothermal Field, California—The Lessons Learned. In Proceeding of the 36th Workshop on Geothermal Reservoir Engineering, Stanford University, Stanford, CA, USA.

2. (2024, June 01). EIA: Electricity Data Browser, Number of Geothermal Power Plants, USA, Available online: https://www.eia.gov/electricity/data/browser/#/topic/1?agg=2,0,1&fuel=001&geo=g&sec=g&freq=A&rtype=s&start=2001&end=2023&ctype=linechart<ype=pin&rse=0&pin=&maptype=0.

3. Fridriksson, T., Merino, A.M., Orucu, A.Y., and Audinet, P. (2017, January 13–15). Greenhouse Gas Emissions from Geothermal Power Production. Proceedings of the 42nd Workshop on Geothermal Reservoir Engineering, Stanford University, Stanford, CA, USA.

4. (2024, June 01). New Zealand Geothermal Association: Geothermal Emissions in New Zealand. Available online: https://www.nzgeothermal.org.nz/geothermal-in-nz/what-is-geothermal/.

5. IPCC (2011). Special Report on Renewable Energy Sources and Climate Change Mitigation, Cambridge University Press. Available online: https://www.ipcc.ch/site/assets/uploads/2018/03/SRREN_Full_Report-1.pdf.

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