Rock mechanical properties of immature, organic-rich source rocks and their relationships to rock composition and lithofacies

Mechanical properties of layered rocks are critical in ensuring wellbore integrity and predicting natural fracture occurrence for successful reservoir development, particularly in unconventional reservoirs for which fractures provide the main pathway for hydrocarbon flow. We examine rock mechanical...

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Main Authors: Abu-Mahfouz, IS, Iakusheva, R, Finkbeiner, T, Cartwright, J, Vahrenkamp, V
Format: Journal article
Language:English
Published: Geological Society of London 2023
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author Abu-Mahfouz, IS
Iakusheva, R
Finkbeiner, T
Cartwright, J
Vahrenkamp, V
author_facet Abu-Mahfouz, IS
Iakusheva, R
Finkbeiner, T
Cartwright, J
Vahrenkamp, V
author_sort Abu-Mahfouz, IS
collection OXFORD
description Mechanical properties of layered rocks are critical in ensuring wellbore integrity and predicting natural fracture occurrence for successful reservoir development, particularly in unconventional reservoirs for which fractures provide the main pathway for hydrocarbon flow. We examine rock mechanical properties of exceptionally organic-rich, immature source rocks from Jordan, and understand their relationships with rock mineral composition and lithofacies variations. Four depositional microfacies were identified: organic-rich mudstone, organic-rich wackestone, silica-rich packstone and fine-grained organic-rich wackestone. The four types exhibit various mineralogical compositions, dominated by carbonates, biogenic quartz and apatite. Leeb hardness ranges between 288 and 654, with the highest average values occurring in silica-rich packstone and organic-rich mudstone. The highest uniaxial compressive strength (derived from the intrinsic specific energy measured using an Epslog Wombat scratch device), and compressional- and shear-wave velocities were measured in organic-rich mudstones (140 MPa, 3368 m s−1 and 1702 m s−1, respectively). Porosity shows higher average values in organic-rich wackestones and fine-grained organic-rich wackestones (33–35%). Silica-rich packstone and organic-rich mudstone have brittle properties, while organic-rich wackestone and fine-grained organic-rich wackestone are ductile. High silica contents are correlated positively with brittleness. A strong hardness–brittleness correlation suggests that Leeb hardness is a useful proxy for brittleness. Our study allows a better understanding of the relationships between lithofacies, organic content and rock mechanical properties, with implications for fracking design to well completion and hydrocarbon production. Further work involving systematic sampling and a more rigorous study is still required to better understand the spatial distribution of target lithologies and their mechanical properties.
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spelling oxford-uuid:ae15b416-f4eb-4e4c-8d00-a671e8e914572023-05-09T16:15:19ZRock mechanical properties of immature, organic-rich source rocks and their relationships to rock composition and lithofaciesJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:ae15b416-f4eb-4e4c-8d00-a671e8e91457EnglishSymplectic ElementsGeological Society of London2023Abu-Mahfouz, ISIakusheva, RFinkbeiner, TCartwright, JVahrenkamp, VMechanical properties of layered rocks are critical in ensuring wellbore integrity and predicting natural fracture occurrence for successful reservoir development, particularly in unconventional reservoirs for which fractures provide the main pathway for hydrocarbon flow. We examine rock mechanical properties of exceptionally organic-rich, immature source rocks from Jordan, and understand their relationships with rock mineral composition and lithofacies variations. Four depositional microfacies were identified: organic-rich mudstone, organic-rich wackestone, silica-rich packstone and fine-grained organic-rich wackestone. The four types exhibit various mineralogical compositions, dominated by carbonates, biogenic quartz and apatite. Leeb hardness ranges between 288 and 654, with the highest average values occurring in silica-rich packstone and organic-rich mudstone. The highest uniaxial compressive strength (derived from the intrinsic specific energy measured using an Epslog Wombat scratch device), and compressional- and shear-wave velocities were measured in organic-rich mudstones (140 MPa, 3368 m s−1 and 1702 m s−1, respectively). Porosity shows higher average values in organic-rich wackestones and fine-grained organic-rich wackestones (33–35%). Silica-rich packstone and organic-rich mudstone have brittle properties, while organic-rich wackestone and fine-grained organic-rich wackestone are ductile. High silica contents are correlated positively with brittleness. A strong hardness–brittleness correlation suggests that Leeb hardness is a useful proxy for brittleness. Our study allows a better understanding of the relationships between lithofacies, organic content and rock mechanical properties, with implications for fracking design to well completion and hydrocarbon production. Further work involving systematic sampling and a more rigorous study is still required to better understand the spatial distribution of target lithologies and their mechanical properties.
spellingShingle Abu-Mahfouz, IS
Iakusheva, R
Finkbeiner, T
Cartwright, J
Vahrenkamp, V
Rock mechanical properties of immature, organic-rich source rocks and their relationships to rock composition and lithofacies
title Rock mechanical properties of immature, organic-rich source rocks and their relationships to rock composition and lithofacies
title_full Rock mechanical properties of immature, organic-rich source rocks and their relationships to rock composition and lithofacies
title_fullStr Rock mechanical properties of immature, organic-rich source rocks and their relationships to rock composition and lithofacies
title_full_unstemmed Rock mechanical properties of immature, organic-rich source rocks and their relationships to rock composition and lithofacies
title_short Rock mechanical properties of immature, organic-rich source rocks and their relationships to rock composition and lithofacies
title_sort rock mechanical properties of immature organic rich source rocks and their relationships to rock composition and lithofacies
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