Publications

  • Leakage Calculator for Plugged-and-Abandoned Wells

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  • Consequence Quantification of Barrier System Failures in Permanently Plugged and Abandoned Wells

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  • Barrier definitions and risk assessment tools for geothermal wells

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  • Leakage pathways and quantitative models for simplistic estimation of flow through plugged and abandoned wells

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  • Development of a framework for well integrity risk assessment of geothermal wells

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  • Coal quality effects on the performance of an IGCC pwer plant with CO2 capture in India

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  • Polygeneration as a future sustainable energy solution – A comprehensive review

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  • Raising the standard of well integrity for high-temperature geothermal wells

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  • Benchmarking of a micro gas turbine model integrated with post-comustion CO2 capture

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  • Establishment of a Quantitative Risk-Based Approach for Evaluation of Containment Performance in the Context of Permanently Plugged and Abandoned Petroleum Wells

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  • Leakage Calculator for Plugged and Abandoned Wells

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  • Deliverable D6.2 - A roadmap for transferring well integrity risk assessment from oil and gas to geothermal

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  • A comparison of FEP-analysis and barrier analysis for CO2 leakage risk assessment on an abondoned Czech oildfield

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  • Coal quality effects on the performance of an IGCC power plant

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  • An overview of different approaches to assessing leakage risk in geological storage systems

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  • Techno-economic comparative study on hydrogen and electricity cogeneration systems with CO2 capture

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  • Feasibility Study on Deep Geothermal Drilling in Ålgård

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  • Techno-economic evaluation of an integrated hydrogen and power

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  • Techno-economic evaluation of an integrated hydrogen and power co-generation system with CO2 capture

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  • Offwind - Prediction tools for offshore wind energy generation

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  • Investigation on Future Solar Water Heating System, Smart Control, Monitoring and Performance Optimization Tools, and Heat recovery Potential from Isolated Cooling Systems

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  • Intelligent Biogas Fuelled Dirstributed Energy Conversion Technologies: Overviewof a Pilot Study in Norway

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  • Techno-Economic Assessment of fossil fuel power plants with CO2 capture - Results of EU H2-IGCC

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  • Micro gas turbine configurations with carbon capture - Performance

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  • Performance analysis of a biogas-fueled micro gas turbine using

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  • An EU initiative for future generation of IGCC power plants using hydrogen-rich syngas: simulation results for the baseline configuration

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  • Development of H2-Rich Syngas Fuelled GT for Future IGCC Power Plants: Establishment of a Baseline - GT2011-45701

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International Research Institute of Stavanger
Mailing address:
Visiting address:
P.O. Box 8046, N-4068 Stavanger, Norway
Prof. Olav Hanssensvei 15, 4021 Stavanger


Phone:
Fax:

+47 51 87 50 00
+47 51 87 52 00

General email address: firmapost@iris.no
International Research Institute of Stavanger
Mailing address:
Visiting address:
P.O. Box 8046, N-4068 Stavanger, Norway
Prof. Olav Hanssensvei 15, 4021 Stavanger


Phone:
Fax:

+47 51 87 50 00
+47 51 87 52 00

General email address: firmapost@iris.no
International Research Institute of Stavanger
Mailing address:



Visiting address:
P.O. Box 8046
N-4068 Stavanger
Norway

Prof. Olav Hanssensvei 15 
4021 Stavanger

 
Phone:
Fax:
General email:
+47 51 87 50 00
+47 51 87 52 00
firmapost@iris.no