Can Agents Model Hydrocarbon Migration for Petroleum System Analysis? A Fast Screening Tool to De-Risk Hydrocarbon Prospects

Understanding subsurface hydrocarbon migration is a crucial task for petroleum geoscientists. Hydrocarbons are released from deeply buried and heated source rocks, such as shales with a high organic content. They then migrate upwards through the overlying lithologies. Some hydrocarbon becomes trappe...

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Main Authors: Bastian Steffens, Quentin Corlay, Nathan Suurmeyer, Jessica Noglows, Dan Arnold, Vasily Demyanov
Format: Article
Language:English
Published: MDPI AG 2022-01-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/15/3/902
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author Bastian Steffens
Quentin Corlay
Nathan Suurmeyer
Jessica Noglows
Dan Arnold
Vasily Demyanov
author_facet Bastian Steffens
Quentin Corlay
Nathan Suurmeyer
Jessica Noglows
Dan Arnold
Vasily Demyanov
author_sort Bastian Steffens
collection DOAJ
description Understanding subsurface hydrocarbon migration is a crucial task for petroleum geoscientists. Hydrocarbons are released from deeply buried and heated source rocks, such as shales with a high organic content. They then migrate upwards through the overlying lithologies. Some hydrocarbon becomes trapped in suitable geological structures that, over a geological timescale, produce viable hydrocarbon reservoirs. This work investigates how intelligent agent models can mimic these complex natural subsurface processes and account for geological uncertainty. Physics-based approaches are commonly used in petroleum system modelling and flow simulation software to identify migration pathways from source rocks to traps. However, the problem with these simulations is that they are computationally demanding, making them infeasible for extensive uncertainty quantification. In this work, we present a novel dynamic screening tool for secondary hydrocarbon migration that relies on agent-based modelling. It is fast and is therefore suitable for uncertainty quantification, before using petroleum system modelling software for a more accurate evaluation of migration scenarios. We first illustrate how interacting but independent agents can mimic the movement of hydrocarbon molecules using a few simple rules by focusing on the main drivers of migration: buoyancy and capillary forces. Then, using a synthetic case study, we validate the usefulness of the agent modelling approach to quantify the impact of geological parameter uncertainty (e.g., fault transmissibility, source rock location, expulsion rate) on potential hydrocarbon accumulations and migrations pathways, an essential task to enable quick de-risking of a likely prospect.
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spelling doaj.art-d2756f022c164b6eb49ca8e8e09f627a2023-11-23T16:21:49ZengMDPI AGEnergies1996-10732022-01-0115390210.3390/en15030902Can Agents Model Hydrocarbon Migration for Petroleum System Analysis? A Fast Screening Tool to De-Risk Hydrocarbon ProspectsBastian Steffens0Quentin Corlay1Nathan Suurmeyer2Jessica Noglows3Dan Arnold4Vasily Demyanov5Institute of GeoEnergy Engineering (IGE), Heriot-Watt University, Edinburgh EH14 4AS, UKInstitute of GeoEnergy Engineering (IGE), Heriot-Watt University, Edinburgh EH14 4AS, UKStudio X LLC, Austin, TX 78702, USAStudio X LLC, Austin, TX 78702, USAInstitute of GeoEnergy Engineering (IGE), Heriot-Watt University, Edinburgh EH14 4AS, UKInstitute of GeoEnergy Engineering (IGE), Heriot-Watt University, Edinburgh EH14 4AS, UKUnderstanding subsurface hydrocarbon migration is a crucial task for petroleum geoscientists. Hydrocarbons are released from deeply buried and heated source rocks, such as shales with a high organic content. They then migrate upwards through the overlying lithologies. Some hydrocarbon becomes trapped in suitable geological structures that, over a geological timescale, produce viable hydrocarbon reservoirs. This work investigates how intelligent agent models can mimic these complex natural subsurface processes and account for geological uncertainty. Physics-based approaches are commonly used in petroleum system modelling and flow simulation software to identify migration pathways from source rocks to traps. However, the problem with these simulations is that they are computationally demanding, making them infeasible for extensive uncertainty quantification. In this work, we present a novel dynamic screening tool for secondary hydrocarbon migration that relies on agent-based modelling. It is fast and is therefore suitable for uncertainty quantification, before using petroleum system modelling software for a more accurate evaluation of migration scenarios. We first illustrate how interacting but independent agents can mimic the movement of hydrocarbon molecules using a few simple rules by focusing on the main drivers of migration: buoyancy and capillary forces. Then, using a synthetic case study, we validate the usefulness of the agent modelling approach to quantify the impact of geological parameter uncertainty (e.g., fault transmissibility, source rock location, expulsion rate) on potential hydrocarbon accumulations and migrations pathways, an essential task to enable quick de-risking of a likely prospect.https://www.mdpi.com/1996-1073/15/3/902agent-based modellinghydrocarbon migration<i>Go with the Flow</i>uncertainty quantificationdecision makingpetroleum system modelling
spellingShingle Bastian Steffens
Quentin Corlay
Nathan Suurmeyer
Jessica Noglows
Dan Arnold
Vasily Demyanov
Can Agents Model Hydrocarbon Migration for Petroleum System Analysis? A Fast Screening Tool to De-Risk Hydrocarbon Prospects
Energies
agent-based modelling
hydrocarbon migration
<i>Go with the Flow</i>
uncertainty quantification
decision making
petroleum system modelling
title Can Agents Model Hydrocarbon Migration for Petroleum System Analysis? A Fast Screening Tool to De-Risk Hydrocarbon Prospects
title_full Can Agents Model Hydrocarbon Migration for Petroleum System Analysis? A Fast Screening Tool to De-Risk Hydrocarbon Prospects
title_fullStr Can Agents Model Hydrocarbon Migration for Petroleum System Analysis? A Fast Screening Tool to De-Risk Hydrocarbon Prospects
title_full_unstemmed Can Agents Model Hydrocarbon Migration for Petroleum System Analysis? A Fast Screening Tool to De-Risk Hydrocarbon Prospects
title_short Can Agents Model Hydrocarbon Migration for Petroleum System Analysis? A Fast Screening Tool to De-Risk Hydrocarbon Prospects
title_sort can agents model hydrocarbon migration for petroleum system analysis a fast screening tool to de risk hydrocarbon prospects
topic agent-based modelling
hydrocarbon migration
<i>Go with the Flow</i>
uncertainty quantification
decision making
petroleum system modelling
url https://www.mdpi.com/1996-1073/15/3/902
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