<?xml version='1.0' encoding='UTF-8'?><codeBook xmlns="ddi:codebook:2_5" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="ddi:codebook:2_5 https://ddialliance.org/Specification/DDI-Codebook/2.5/XMLSchema/codebook.xsd" version="2.5"><docDscr><citation><titlStmt><titl>Supporting Data for: Mineral precipitation and geometry alteration in porous structures: How to upscale variations in permeability-porosity relationship?</titl><IDNo agency="DOI">doi:10.18710/3LT3QU</IDNo></titlStmt><distStmt><distrbtr source="archive">DataverseNO</distrbtr><distDate>2024-03-08</distDate></distStmt><verStmt source="archive"><version date="2024-03-08" type="RELEASED">1</version></verStmt><biblCit>Masoudi, Mohammad; Nooraiepour, Mohammad; Deng, Hang; Hellevang, Helge, 2024, "Supporting Data for: Mineral precipitation and geometry alteration in porous structures: How to upscale variations in permeability-porosity relationship?", https://doi.org/10.18710/3LT3QU, DataverseNO, V1</biblCit></citation></docDscr><stdyDscr><citation><titlStmt><titl>Supporting Data for: Mineral precipitation and geometry alteration in porous structures: How to upscale variations in permeability-porosity relationship?</titl><IDNo agency="DOI">doi:10.18710/3LT3QU</IDNo></titlStmt><rspStmt><AuthEnty affiliation="University of Oslo">Masoudi, Mohammad</AuthEnty><AuthEnty affiliation="University of Oslo">Nooraiepour, Mohammad</AuthEnty><AuthEnty affiliation="Peking University">Deng, Hang</AuthEnty><AuthEnty affiliation="University of Oslo">Hellevang, Helge</AuthEnty><othId role="Data Collector">Masoudi, Mohammad</othId><othId role="Data Collector">Nooraiepour, Mohammad</othId><othId role="Data Curator">Masoudi, Mohammad</othId><othId role="Data Curator">Nooraiepour, Mohammad</othId><othId role="Project Leader">Hellevang, Helge</othId><othId role="Other">Deng, Hang</othId></rspStmt><prodStmt><producer abbr="UiO">University of Oslo</producer><software version="3">Python</software><grantNo agency="Research Council of Norway">315804</grantNo><grantNo agency="Norway Grants">UMO-2019/34/H/ST10/00564</grantNo></prodStmt><distStmt><distrbtr source="archive">DataverseNO</distrbtr><distrbtr abbr="UiO" URI="https://dataverse.no/dataverse/uio">University of Oslo</distrbtr><contact affiliation="University of Oslo" email="mohammad.nooraiepour@geo.uio.no">Mohammad Nooraiepour</contact><contact affiliation="University of Oslo" email="mohammad.masoudi@geo.uio.no">Mohammad Masoudi</contact><depositr>Nooraiepour, Mohammad</depositr><depDate>2023-09-12</depDate></distStmt><holdings URI="https://doi.org/10.18710/3LT3QU"/></citation><stdyInfo><subject><keyword xml:lang="en">Earth and Environmental Sciences</keyword><keyword>Mineral precipitation</keyword><keyword>Geometry evolution</keyword><keyword>Upscaling</keyword></subject><abstract date="2024-03-06">Porous materials in natural and engineered environments are subject to morphological changes resulting from interacting chemical and physical processes. The complexity of coupled flow, transport, and chemical processes that occur on different temporal and spatial scales makes it difficult to predict the resulting porosity and permeability alterations. Delineating the controls of mineral precipitation reactions is particularly challenging because it requires the implementation of nucleation criteria and precipitation attributes. By conducting pore-scale simulations, we studied how the amount and stochastic distribution of crystallites, controlled by nucleation, affect the pore geometry and permeability in two-dimensional porous structures. The observed relationships between porosity and permeability show characteristics that differ from ones that are typically applicable in dissolving porous media because of the clogging effect. Additionally, we propose a stochastic framework that upscales the co-evolution of permeability and porosity across length scales. This framework enables precise communication of clogging behavior to continuum-scale simulations based on statistical probability distributions of permeability-porosity variations.

Keywords: Upscaling; Probabilistic nucleation; Mineral precipitation; Geometry evolution; Permeability-Porosity; Reactive transport; Porous media</abstract><sumDscr><collDate cycle="P1" event="start" date="2022-03-01">2022-03-01</collDate><collDate cycle="P1" event="end" date="2023-04-01">2023-04-01</collDate><dataKind>Simulations</dataKind><dataKind>Rock geometry alteration numerics</dataKind></sumDscr></stdyInfo><method><dataColl><sources/></dataColl><anlyInfo/></method><dataAccs><setAvail/><useStmt/><notes type="DVN:TOU" level="dv">&lt;a href="http://creativecommons.org/publicdomain/zero/1.0">CC0 1.0&lt;/a></notes></dataAccs><othrStdyMat><relPubl><citation><titlStmt><titl>Mohammad Masoudi, Mohammad Nooraiepour, Hang Deng, Helge Hellevang. Mineral precipitation and geometry alteration in porous structures: How to upscale variations in permeability porosity relationship? EarthArXiv: 10.31223/X56Q41</titl><IDNo agency="doi">10.31223/X56Q41</IDNo></titlStmt><biblCit>Mohammad Masoudi, Mohammad Nooraiepour, Hang Deng, Helge Hellevang. Mineral precipitation and geometry alteration in porous structures: How to upscale variations in permeability porosity relationship? EarthArXiv: 10.31223/X56Q41</biblCit></citation><ExtLink URI="https://eartharxiv.org/repository/view/6515/"/></relPubl></othrStdyMat></stdyDscr><otherMat ID="f206751" URI="https://dataverse.no/api/access/datafile/206751" level="datafile"><labl>00_README.txt</labl><txt>Readme file. Start here...</txt><notes level="file" type="DATAVERSE:CONTENTTYPE" subject="Content/MIME Type">text/plain</notes></otherMat><otherMat ID="f206750" URI="https://dataverse.no/api/access/datafile/206750" level="datafile"><labl>probabilisticupscaling_permeabilityporositychanges_v1.1.zip</labl><txt>Numerical simulation data files, including alterations in porous geometries over time/reaction progress and associated porosity-permeability</txt><notes level="file" type="DATAVERSE:CONTENTTYPE" subject="Content/MIME Type">application/zip</notes></otherMat></codeBook>