logo

Combined Renewable Energy Resources System Geothermal

PDF Publication Title:

Combined Renewable Energy Resources System Geothermal ( combined-renewable-energy-resources-system-geothermal )

Previous Page View | Next Page View | Return to Search List

Text from PDF Page: 022

Energies 2022, 15, 6398 22 of 23 References 1. Directive (EU) 2009/28/EC of the European Parliament and of the Council of 23 April 2009 on the Promotion of the Use of Energy from Renewable Sources and Amending and Subsequently Repealing Directives 2001/77/EC and 2003/30/EC. Available online: http://eur-lex.europa.eu/legal-content/EN/TXT/HTML/?uri=CELEX:32009L0028&from=EN (accessed on 3 July 2022). 2. Directive (EU) 2018/2001 Directive (EU) 2018/2001 of the European Parliament and of the Council of 11 December 2018 on the Promotion of the Use of Energy from Renewable Sources. PE/48/2018/REV/1 2018. Available online: https://eur-lex.europa. eu/legal-content/EN/TXT/?uri=CELEX%3A32018L2001 (accessed on 3 July 2022). 3. Proposal for a Directive of the European Parliament and of the Council Amending Directive (EU) 2018/2001 of the European Parliament and of the Council, Regulation (EU) 2018/1999 of the European Parliament and of the Council and Directive 98/70/EC of the European Parliament and of the Council as Regards the Promotion of Energy from Renewable Sources, and Repealing Council Directive (EU) 2015/652. Available online: https://eur-lex.europa.eu/legal-content/EN/TXT/?uri=CELEX:52021PC0557 (accessed on 3 July 2022). 4. EU′s Objective of Climate Neutrality by 2050-A European Green Deal. Available online: https://ec.europa.eu/info/strategy/ priorities-2019-2024/european-green-deal_en (accessed on 3 July 2022). 5. Olabi, A.G.; Abdelkareem, M.A. Renewable Energy and Climate Change. Renew. Sustain. Energy Rev. 2022, 158, 112111. [CrossRef] 6. Surma, G.; Zabaniotou, A. Understanding Vulnerabilities of Renewable Energy Systems for Building Their Resilience to Climate Change Hazards: Key Concepts and Assessment Approaches. Renew. Energy Environ. Sustain. 2021, 6, 10. [CrossRef] 7. Kaczmarczyk, M.; Tomaszewska, B.; Operacz, A. Sustainable Utilization of Low Enthalpy Geothermal Resources to Electricity Generation through a Cascade System. Energies 2020, 13, 2495. [CrossRef] 8. Suman, A. Role of Renewable Energy Technologies in Climate Change Adaptation and Mitigation: A Brief Review from Nepal. Renew. Sustain. Energy Rev. 2021, 151, 111524. [CrossRef] 9. Sowiz ̇dz ̇ał,A.;Chmielowska,A.;Tomaszewska,B.;Operacz,A.;Chowaniec,J.Couldgeothermalwaterandenergyuseimprove living conditions? Environmental effects from Poland. Arch. Environ. Prot. 2019, 45, 109–118. [CrossRef] 10. Arens, M.; Åhman, M.; Vogl, V. Which Countries Are Prepared to Green Their Coal-Based Steel Industry with Electricity? - Reviewing Climate and Energy Policy as Well as the Implementation of Renewable Electricity. Renew. Sustain. Energy Rev. 2021, 143, 110938. [CrossRef] 11. Karimov, K.S.; Akhmedov, K.M.; Abid, M.; Petrov, G.N. Effective management of combined renewable energy resources in Tajikistan. Sci. Total Environ. 2013, 461, 835–838. [CrossRef] 12. Bagherian, M.A.; Mehranzamir, K. A comprehensive review on renewable energy integration for combined heat and power production. Energy Convers. Manag. 2020, 224, 113454. [CrossRef] 13. Gudmundsson, J.; Freeston, D.; Lienau, P. The Lindal diagram. GRC Trans. 1985, 9, 15–17. 14. Mirfallah Lialestani, S.; Parcerisa, D.; Himi, M.; Abbaszadeh Shahri, A. Generating 3D Geothermal Maps in Catalonia, Spain Using a Hybrid Adaptive Multitask Deep Learning Procedure. Energies 2022, 15, 4602. [CrossRef] 15. Zhu, Z.; Lei, X.; Xu, N.; Shao, D.; Jiang, X.; Wu, X. Integration of 3D Geological Modeling and Geothermal Field Analysis for the Evaluation of Geothermal Reserves in the Northwest of Beijing Plain, China. Water 2020, 12, 638. [CrossRef] 16. Aghahosseini, A.; Breyer, C. From hot rock to useful energy: A global estimate of enhanced geothermal systems potential. Appl. Energy 2020, 279, 115769. [CrossRef] 17. Operacz, A.; Chowaniec, J. Perspectives of Geothermal Water Use in the Podhale Basin According to Geothermal Step Distribution. Geol. Gephysics Environ. 2018, 44, 379. [CrossRef] 18. Schiel, K.; Baume, O.; Caruso, G.; Leopold, U. GIS-Based Modelling of Shallow Geothermal Energy Potential for CO2 Emission Mitigation in Urban Areas. Renew. Energy 2016, 86, 1023–1036. [CrossRef] 19. Meng, F.; Liang, X.; Xiao, C.; Wang, G. Geothermal Resource Potential Assessment Utilizing GIS - Based Multi Criteria Decision Analysis Method. Geothermics 2021, 89, 101969. [CrossRef] 20. Navarro, A.; Carulla, N. Evaluation of Geothermal Potential in the Vicinity of the Flooded Sierra Almagrera Mines (Almeria, SE Spain). Mine Water Environ. 2018, 37, 137–150. [CrossRef] 21. Daniele, L.; Taucare, M.; Viguier, B.; Arancibia, G.; Aravena, D.; Roquer, T.; Sepúlveda, J.; Molina, E.; Delgado, A.; Muñoz, M.; et al. Exploring the Shallow Geothermal Resources in the Chilean Southern Volcanic Zone: Insight from the Liquiñe Thermal Springs. J. Geochem. Explor. 2020, 218, 106611. [CrossRef] 22. Wa ̨tor, K.; Zdechlik, R. Application of Water Quality Indices to the Assessment of the Effect of Geothermal Water Discharge on River Water Quality-Case Study from the Podhale Region (Southern Poland). Ecol. Indic. 2021, 121, 107098. [CrossRef] 23. Tomaszewska,B.;Szczepan ́ski,A.PossibilitiesfortheEfficientUtilisationofSpentGeothermalWaters.Environ.Sci.Pollut.Res. 2014, 21, 11409–11417. [CrossRef] 24. Markó, Á.; Mádl-Szo ̋nyi, J.; Brehme, M. Injection Related Issues of a Doublet System in a Sandstone Aquifer-A Generalized Concept to Understand and Avoid Problem Sources in Geothermal Systems. Geothermics 2021, 97, 102234. [CrossRef] 25. Liu, Y.; Hou, J.; Zhao, H.; Liu, X.; Xia, Z. Numerical Simulation of Simultaneous Exploitation of Geothermal Energy and Natural Gas Hydrates by Water Injection into a Geothermal Heat Exchange Well. Renew. Sustain. Energy Rev. 2019, 109, 467–481. [CrossRef] 26. Bugajski, P.; Nowobilska-Majewska, E.; Nowobilska-Luberda, A.; Bergel, T. The Use of Geothermal Waters in Podhale in Terms of Tourism and Industrial Applications. J. Ecol. Eng. 2017, 18, 158–191. [CrossRef] 27. Bujakowski, W.; Barbacki, A. Potential for Geothermal Development in Southern Poland. Geothermics 2004, 33, 383–395. [CrossRef]

PDF Image | Combined Renewable Energy Resources System Geothermal

combined-renewable-energy-resources-system-geothermal-022

PDF Search Title:

Combined Renewable Energy Resources System Geothermal

Original File Name Searched:

energies-15-06398.pdf

DIY PDF Search: Google It | Yahoo | Bing

Turbine and System Plans CAD CAM: Special for this month, any plans are $10,000 for complete Cad/Cam blueprints. License is for one build. Try before you buy a production license. More Info

Waste Heat Power Technology: Organic Rankine Cycle uses waste heat to make electricity, shaft horsepower and cooling. More Info

All Turbine and System Products: Infinity Turbine ORD systems, turbine generator sets, build plans and more to use your waste heat from 30C to 100C. More Info

CO2 Phase Change Demonstrator: CO2 goes supercritical at 30 C. This is a experimental platform which you can use to demonstrate phase change with low heat. Includes integration area for small CO2 turbine, static generator, and more. This can also be used for a GTL Gas to Liquids experimental platform. More Info

Introducing the Infinity Turbine Products Infinity Turbine develops and builds systems for making power from waste heat. It also is working on innovative strategies for storing, making, and deploying energy. More Info

Need Strategy? Use our Consulting and analyst services Infinity Turbine LLC is pleased to announce its consulting and analyst services. We have worked in the renewable energy industry as a researcher, developing sales and markets, along with may inventions and innovations. More Info

Made in USA with Global Energy Millennial Web Engine These pages were made with the Global Energy Web PDF Engine using Filemaker (Claris) software.

Sand Battery Sand and Paraffin for TES Thermo Energy Storage More Info

CONTACT TEL: 608-238-6001 Email: greg@infinityturbine.com | RSS | AMP