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Eijsink, Agathe; Ikari, Matt J (2023): Measured rate-and-state friction coefficients, with input parameters for the forward model and the best fit model parameters as obtained by an inverse modelling technique during laboratory shear experiments [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.959036, In: Eijsink, A; Ikari, MJ (2023): Varying the fault-normal and shear-parallel stiffness during laboratory shear experiments [dataset bundled publication]. PANGAEA, https://doi.org/10.1594/PANGAEA.959038

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Keyword(s):
fault stiffness; friction; laboratory friction experiments; slip stability
Related to:
Eijsink, Agathe; Ikari, Matt J (2024): How Fault‐Normal and Shear‐Parallel Stiffness Influence Frictional Sliding Behavior. Journal of Geophysical Research: Solid Earth, 129(2), e2023JB027193, https://doi.org/10.1029/2023JB027193
Funding:
European Research Council (ERC), grant/award no. 714430: Plate-rate experimental deformation: Aseismic, transient or seismic fault slip
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
1ExperimentExpEijsink, Agathesee reference(s)
2Normal stiffnessknMPa/mmEijsink, Agathesee reference(s)
3Shear stiffnessksMPa/mmEijsink, Agathesee reference(s)
4Normal stiffness/Shear stiffness ratiokN/kSEijsink, Agathesee reference(s)
5Normal StressσNMPaEijsink, Agathesee reference(s)
6Sliding velocity, initialV initµm/sEijsink, Agathesee reference(s)v0, model set-up
7Sliding velocity, finalV finalµm/sEijsink, Agathesee reference(s)v1, model set-up
8Linear detrendingDetrending1/mEijsink, Agathesee reference(s)model set-up
9Initial friction coefficientµ0Eijsink, Agathesee reference(s)forward model parameters
10Friction direct effectaEijsink, Agathesee reference(s)forward model parameters
11Friction evolutionary effect, b1b1Eijsink, Agathesee reference(s)forward model parameters
12Critical slip distanceDcµmEijsink, Agathesee reference(s)forward model parameters
13Machine stiffnesskµmEijsink, Agathesee reference(s)forward model parameters
14Velocity-dependent friction parametera-bEijsink, Agathesee reference(s)forward model parameters
15Initial friction coefficientµ0Eijsink, Agathesee reference(s)inverse model parameters, inverse model using slip law
16Initial friction coefficient, standard deviationmu std dev±Eijsink, Agathesee reference(s)inverse model parameters, inverse model using slip law
17Friction direct effectaEijsink, Agathesee reference(s)inverse model parameters, inverse model using slip law
18Friction direct effect, standard deviationa std dev±Eijsink, Agathesee reference(s)inverse model parameters, inverse model using slip law
19Friction evolutionary effect, b1b1Eijsink, Agathesee reference(s)inverse model parameters, inverse model using slip law
20Friction evolutionary effect b1, standard deviationb1 std dev±Eijsink, Agathesee reference(s)inverse model parameters, inverse model using slip law
21Critical slip distanceDcµmEijsink, Agathesee reference(s)inverse model parameters, inverse model using slip law
22Critical slip distance, standard deviationDc std dev±Eijsink, Agathesee reference(s)inverse model parameters, inverse model using slip law
23Machine stiffnessk1/µmEijsink, Agathesee reference(s)inverse model parameters, inverse model using slip law
24Machine stiffness, standard deviationk std dev±Eijsink, Agathesee reference(s)inverse model parameters, inverse model using slip law
25Velocity-dependent friction parametera-bEijsink, Agathesee reference(s)inverse model parameters, inverse model using slip law
26StiffnessKMPa/mmEijsink, Agathesee reference(s)kc, inverse model parameters, inverse model using slip law
27PlotPlotEijsink, Agathesee reference(s)Plot ID
Status:
Curation Level: Enhanced curation (CurationLevelC)
Size:
2442 data points

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