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Nathaniel Forbes Inskip

Heriot Watt University

Institute of Petroleum Engineering

Edinburgh, EH144AS

United Kingdom

SCHOLARLY PAPERS

3

DOWNLOADS

512

TOTAL CITATIONS

0

Scholarly Papers (3)

1.

Modelling Geological Co2 Leakage: Integrating Fracture Permeability and Fault Zone Outcrop Analysis

Number of pages: 57 Posted: 13 Sep 2023
Department of Earth Sciences, University of Florence, Heriot Watt University, affiliation not provided to SSRN, University Centre in Svalbard, affiliation not provided to SSRN, affiliation not provided to SSRN, Shell Global Solutions International B.V., University Centre in Svalbard, Heriot-Watt University and Heriot-Watt University
Downloads 220 (348,255)

Abstract:

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Fracture Permeability, Fault Damage Zone Analysis, Outcrop Studies, Geological Carbon Capture and Storage, Permeability Modelling

2.

Modelling of Long-term Along-fault Flow of CO2 From a Natural Reservoir

Proceedings of the 15th Greenhouse Gas Control Technologies Conference 15-18 March 2021
Number of pages: 12 Posted: 31 Mar 2021
Shell Global Solutions International B.V., Shell Global Solutions International B.V., Shell Global Solutions International B.V., Shell Global Solutions International B.V., Heriot Watt University, Heriot Watt University, Heriot-Watt University - Institute of GeoEnergy Engineering, Heriot Watt University, Heriot-Watt University and Heriot-Watt University
Downloads 186 (407,391)

Abstract:

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CO2 storage, fault, fracture; leakage, model, stress, mineralisation, Green River

3.

Time-Dependent Deformation and Permeability Evolution in Porous Sandstones: Implications for Underground Hydrogen Storage

Number of pages: 60 Posted: 11 Dec 2024
affiliation not provided to SSRN, University of Liverpool - Department of Earth, Ocean and Ecological Sciences, RWTH Aachen University, Heriot Watt University, affiliation not provided to SSRN, Heriot-Watt University, affiliation not provided to SSRN and Heriot-Watt University
Downloads 106 (659,652)

Abstract:

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Underground hydrogen storage, Porous sandstone, Time-dependent deformation, Permeability, Microstructural analysis, Burgers model