Material Collection: benchmarks_sfs

Material List

Material Summary

Collection File Path

src/material_library/registries/benchmarks/benchmarks.yml

Material Tables: Seafloor_Spreading

SFSStickyAir

Property NameValueUnitsDescription
standard_density1.0kg/m^3Density at standard conditions.
thermal_expansion0.01/KThermal expansion.
compressibility01/PaCompressibility.
flow_stypeIsoviscousNoneFlow law option.
viscosity_iso1.0e18Pa.sViscosity for isoviscous models.
shear_modulus1.0e20PaShear modulus.
heat_capacity100.0J/kg/KHeat capacity.
thermal_conductivity_ref200.0W/m/KReference thermal conductivity parameter k0.
thermal_conductivity_a0.0W/mReference thermal conductivity parameter a.
radiogenic_heat_production0.0W/m^3Radiogenic heat production.

SFSStickyWater

Property NameValueUnitsDescription
standard_density1000.0kg/m^3Density at standard conditions.
thermal_expansion0.01/KThermal expansion.
compressibility0.01/PaCompressibility.
melt_density0.0kg/m^3Melt density.
flow_stypeIsoviscousNoneFlow law option.
viscosity_iso1.0e18Pa.sViscosity for isoviscous models.
shear_modulus1.0e20PaShear modulus.
heat_capacity100.0J/kg/KHeat capacity.
thermal_conductivity_ref200.0W/m/KReference thermal conductivity parameter k0.
thermal_conductivity_a0.0W/mReference thermal conductivity parameter a.
radiogenic_heat_production0.0W/m^3Radiogenic heat production.

SFSClasticSediment

Property NameValueUnitsDescription
standard_density2710.0kg/m^3Density at standard conditions: Shale50%:Sandstone50%, typical rocks from Hantschel and Kauerauf (2010).
thermal_expansion3.0e-51/KThermal expansion.
compressibility1.8e-111/PaCompressibility (Brune et al., 2014).
melt_density2400.0kg/m^3Melt density at 1 bar used in linearized Birch-Murnagham density model (Dacite from Lesher and Spera, 2015, Fig5.1).
flow_stypeCompositeNoneFlow law option.
pre_exponential_dc0.0008571/s/MPa^nTensor invariant pre-exponential factor for dislocation creep for wet quartzite (Gleason and Tullis, 1995).
stress_exponent_n_dc4.0NoneStress exponent for dislocation creep for wet quartzite (Gleason and Tullis, 1995).
activation_energy_dc223.0kJ/molActivation energy for dislocation creep for wet Quartzite (Gleason and Tullis, 1995).
activation_volume_dc0.0J/MPa/molActivation volume for dislocation creep.
shear_modulus3.6e10PaShear modulus (Brune et al., 2014, Table S1).
cohesion_initial2.0e7PaCohesion at initial strain.
cohesion_final1.0e7PaCohesion at final strain.
friction_angle_initial30.0DegreesFriction angle at initial strain.
friction_angle_final7.0DegreesFriction angle at final strain.
strain_initial0.0NoneInitial strain used for cohesion and friction angle.
strain_final1.0NoneFinal strain used for cohesion and friction angle.
heat_capacity890.0J/kg/KReference heat capacity in Waples model (Hantschel and Kauerauf, 2010).
thermal_conductivity_ref2.3W/m/KReference matrix thermal conductivity @ 20C: Shale50%:Sandstone50%, typical rocks from Hantschel and Kauerauf (2010).
radiogenic_heat_production1.4e-6W/m^3Radiogenic heat production: Shale50%:Sandstone50%, typical rocks from Hantschel and Kauerauf (2010).
stype_solidusSedimentGerya2010NoneSolidus model
stype_liquidusSedimentGerya2010NoneLiquidus model
latent_heat300000.0J/kgLatent heat (Liao and Gerya, 2014).
porosity_initial0.4fractionInitial porosity.
porosity_decay_depth2500.0mPorosity decay depth used in exponential decay law.

SFSPeridotiteDryFertile

Property NameValueUnitsDescription
standard_density3311.0kg/m^3Density at standard conditions (Calibrated by Theunissen et al, 2022).
thermal_expansion3.0e-51/KThermal expansion.
compressibility7.9e-121/PaCompressibility (Turcotte and Schubert. 2014, Table B.6, r=6151km).
melt_density2750.0kg/m^3Melt density at 1 bar (1e-4 GPa) used in linearized Birch-Murnagham EOS density model (Lesher and Spera, 2015).
flow_stypeCompositeNoneFlow law option.
pre_exponential_dc651000.01/s/MPa^nTensor invariant pre-exponential factor for dislocation creep for dry olivine aggregate (Hirth and Kohlstedt, 2003).
stress_exponent_n_dc3.5NoneStress exponent for dislocation creep for dry olivine aggregate (Hirth and Kohlstedt, 2003).
activation_energy_dc530.0kJ/molActivation energy for dislocation creep for dry olivine aggregate (Hirth and Kohlstedt, 2003).
activation_volume_dc13.0J/MPa/molActivation volume for dislocation creep: Dry Olivine (Hirth and Kohlstedt, 2003).
pre_exponential_difc0.01041/s/MPa^nTensor invariant pre-exponential factor for diffusion creep for dry olivine aggregate using a grain size of 10 mm (Hirth and Kohlstedt, 2003).
activation_energy_difc375.0kJ/molActivation energy for diffusion creep for dry olivine aggregate (Hirth and Kohlstedt, 2003).
activation_volume_difc6J/MPa/molActivation volume for diffusion creep for dry olivine aggregate, (Hirth and Kohlstedt, 2003)
pre_exponential_pei2.5e7s^-m1*MPa^-m2Pre-exponential factor for Peierls creep adjusted from 6.31e+7 for dry conditions and consistency with dislocation creep law (See Katayama and Karato 2008 for wet case)
stress_exponent_m1_pei1.0NoneStress exponent m1 for Peierls creep (Katayama and Karato, 2008).
stress_exponent_m2_pei2.0NoneStress exponent m2 for Peierls creep (Katayama and Karato, 2008).
peierls_stress9100.0MPaPeierls stress under dry conditions (Katayama and Karato, 2008).
shear_modulus6.6e10PaShear modulus (Turcotte and Schubert, 2014, Table B.6 r=6151km).
cohesion_initial2.0e7PaCohesion at initial strain (Naliboff et al., 2017).
cohesion_final1.0e7PaCohesion at final strain (Naliboff et al,, 2017).
friction_angle_initial30.0DegreesFriction angle at initial strain (Naliboff et al., 2017).
friction_angle_final7.0DegreesFriction angle at final strain (Naliboff et al., 2017).
strain_initial0.0NoneInitial strain used for cohesion and friction angle.
strain_final1.0NoneFinal strain used for cohesion and friction angle (Naliboff et al., 2017).
heat_capacity800.0J/kg/KReference heat capacity in Waples model (Hantschel and Kauerauf, 2010).
thermal_conductivity_ref4.0W/m/KReference thermal conductivity parameter for use in Sekiguchi-Waples model (Hantschel and Kauerauf, 2010).
stype_solidusPeridotiteKatz2003NoneDry peridotite solidus model from Katz et al. (2003).
stype_liquidusPeridotiteKatz2003NonePeridotite Liquidus model from Katz et al. (2003).
latent_heat400000.0J/kgLatent heat (Turcotte and Schubert, 2014).

SFSGabbroicCrust

Property NameValueUnitsDescription
standard_density2900.0kg/m^3Density at standard conditions (Calibrated by Theunissen et al, 2022).
thermal_expansion3.0e-51/KThermal expansion.
compressibility1.6e-111/PaCompressibility (Brune et al., 2014).
melt_density2750.0kg/m^3Melt density at 1 bar (1e-4 GPa) used in linearized Birch-Murnagham EOS density model (Lesher and Spera, 2015).
flow_stypeCompositeNoneFlow law option.
pre_exponential_dc3570.01/s/MPa^nTensor-invariant pre-exponential factor for dislocation creep for wet anorthite aggregate (Rybacki et al., 2006).
stress_exponent_n_dc3.0NoneStress exponent for dislocation creep for wet anorthite aggregate (Rybacki et al., 2006).
activation_energy_dc345.0kJ/molActivation energy for dislocation creep for wet anorthite aggregate (Rybacki et al., 2006).
activation_volume_dc38.0J/MPa/molActivation volume for dislocation creep for wet anorthite aggregate (Rybacki et al., 2006).
shear_modulus4.0e10PaShear modulus.
cohesion_initial2.0e7PaCohesion at initial strain.
cohesion_final1.0e7PaCohesion at final strain.
friction_angle_initial30.0DegreesFriction angle at initial strain.
friction_angle_final7.0DegreesFriction angle at final strain.
strain_initial0.0NoneInitial strain used for cohesion and friction angle.
strain_final1.0NoneFinal strain used for cohesion and friction angle.
heat_capacity800.0J/kg/KReference heat capacity in Waples model (Hantschel and Kauerauf, 2010).
thermal_conductivity_ref2.5W/m/KReference thermal conductivity parameter for use in Sekiguchi-Waples model (Hantschel and Kauerauf, 2010).
stype_solidusGabbroGerya2010NoneSolidus model
stype_liquidusGabbroGerya2010NoneLiquidus model
latent_heat400000.0J/kgLatent heat (Turcotte and Schubert, 2014).

SFSGabbroicMagma

Property NameValueUnitsDescription
standard_density2750.0kg/m^3Density at standard conditions. Since magma is defined as a melt fraction of 1, the melt_density is used instead of standard density if melt properties are activated.
thermal_expansion3.0e-51/KThermal expansion.
compressibility1.6e-111/PaCompressibility (Brune et al., 2014).
melt_density2750.0kg/m^3Melt density at 1 bar (1e-4 GPa) used in linearized Birch-Murnagham EOS density model (Lesher and Spera, 2015).
flow_stypeIsoviscousNoneFlow law option.
viscosity_iso1.0e18Pa.sViscosity for isoviscous models.
shear_modulus1.0e11PaShear modulus.
heat_capacity800.0J/kg/KHeat capacity.
thermal_conductivity_ref2.5W/m/KReference thermal conductivity parameter k0.
stype_solidusGabbroGerya2010NoneSolidus model
stype_liquidusGabbroGerya2010NoneLiquidus model
latent_heat400000.0J/kgLatent heat (Turcotte and Schubert, 2014).

SFSLayeredGabbroicCrust

Property NameValueUnitsDescription
standard_density2900.0kg/m^3Density at standard conditions (Calibrated by Theunissen et al, 2022).
thermal_expansion3.0e-51/KThermal expansion.
compressibility1.6e-111/PaCompressibility (Brune et al., 2014).
melt_density2750.0kg/m^3Melt density at 1 bar (1e-4 GPa) used in linearized Birch-Murnagham EOS density model (Lesher and Spera, 2015).
flow_stypeCompositeNoneFlow law option.
pre_exponential_dc3570.01/s/MPa^nTensor-invariant pre-exponential factor for dislocation creep for wet anorthite aggregate (Rybacki et al., 2006).
stress_exponent_n_dc3.0NoneStress exponent for dislocation creep for wet anorthite aggregate (Rybacki et al., 2006).
activation_energy_dc345.0kJ/molActivation energy for dislocation creep for wet anorthite aggregate (Rybacki et al., 2006).
activation_volume_dc38.0J/MPa/molActivation volume for dislocation creep for wet anorthite aggregate (Rybacki et al., 2006).
shear_modulus4.0e10PaShear modulus.
cohesion_initial2.0e7PaCohesion at initial strain.
cohesion_final1.0e7PaCohesion at final strain.
friction_angle_initial30.0DegreesFriction angle at initial strain.
friction_angle_final7.0DegreesFriction angle at final strain.
strain_initial0.0NoneInitial strain used for cohesion and friction angle.
strain_final1.0NoneFinal strain used for cohesion and friction angle.
heat_capacity800.0J/kg/KReference heat capacity in Waples model (Hantschel and Kauerauf, 2010).
thermal_conductivity_ref2.5W/m/KReference thermal conductivity parameter for use in Sekiguchi-Waples model (Hantschel and Kauerauf, 2010).
stype_solidusGabbroGlacierNoneSolidus model
stype_liquidusGabbroGlacierNoneLiquidus model
latent_heat400000.0J/kgLatent heat (Turcotte and Schubert, 2014).

SFSLayeredGabbroicMagma

Property NameValueUnitsDescription
standard_density2750.0kg/m^3Density at standard conditions.
thermal_expansion3.0e-51/KThermal expansion.
compressibility1.06e-111/PaCompressibility.
melt_density2750.0kg/m^3Melt density at 1 bar (1e-4 GPa) used in linearized Birch-Murnagham EOS density model (Lesher and Spera, 2015).
flow_stypeIsoviscousNoneFlow law option.
viscosity_iso1.0e18Pa.sViscosity for isoviscous models.
shear_modulus1.0e11PaShear modulus.
heat_capacity800.0J/kg/KHeat capacity.
thermal_conductivity_ref2.6W/m/KReference thermal conductivity parameter k0.
stype_solidusGabbroGlacierNoneSolidus model
stype_liquidusGabbroGlacierNoneLiquidus model
latent_heat400000.0J/kgLatent heat (Turcotte and Schubert, 2014).

SFSUpperContinentalCrust

Property NameValueUnitsDescription
standard_density2860.0kg/m^3Density at standard conditions (Calibrated by Theunissen et al, 2022).
thermal_expansion3.0e-51/KThermal expansion.
compressibility1.8e-111/PaCompressibility (Brune et al., 2014).
melt_density2400.0kg/m^3Melt density at 1 bar used in linearized Birch-Murnagham density model (Dacite from Lesher and Spera, 2015, Fig5.1).
flow_stypeCompositeNoneFlow law option.
pre_exponential_dc0.0008571/s/MPa^nPre-exponential factor for dislocation creep corrected for simple shear: Wet Quartzite, (Gleason and Tullis, 1995).
stress_exponent_n_dc4.0NoneStress exponent for dislocation creep (Wet Quartzite, Gleason and Tullis, 1995).
activation_energy_dc223.0kJ/molActivation energy for dislocation creep (Wet Quartzite, Gleason and Tullis, 1995).
activation_volume_dc0.0J/MPa/molActivation volume for dislocation creep.
shear_modulus3.6e10PaShear modulus (Brune et al., 2014).
cohesion_initial2.0e7PaCohesion at initial strain (Naliboff et al., 2017).
cohesion_final1.0e7PaCohesion at final strain (Naliboff et al., 2017).
friction_angle_initial30.0DegreesFriction angle at initial strain (Naliboff et al., 2017).
friction_angle_final7.0DegreesFriction angle at final strain (Naliboff et al., 2017).
strain_initial0.0NoneInitial strain used for cohesion and friction angle.
strain_final1.0NoneFinal strain used for cohesion and friction angle (Naliboff et al., 2017).
heat_capacity800.0J/kg/KReference heat capacity in Waples model (Hantschel and Kauerauf, 2010).
thermal_conductivity_ref2.5W/m/KReference thermal conductivity parameter for use in Sekiguchi-Waples model (Hantschel and Kauerauf, 2010).
radiogenic_heat_production1.8e-6W/m^3Radiogenic heat production (Hantschel and Kauerauf, 2010).

SFSLowerContinentalCrust

Property NameValueUnitsDescription
standard_density2900.0kg/m^3Density at standard conditions (Calibrated by Theunissen et al, 2022).
thermal_expansion3.0e-51/KThermal expansion.
compressibility1.6e-111/PaCompressibility (Brune et al., 2014).
melt_density2750.0kg/m^3Melt density at 1 bar (1e-4 GPa) used in linearized Birch-Murnagham EOS density model (Lesher and Spera, 2015).
flow_stypeCompositeNoneFlow law option.
pre_exponential_dc3570.01/s/MPa^nTensor-invariant pre-exponential factor for dislocation creep for wet anorthite aggregate, water fugacity = 500 MPa (Rybacki et al., 2006).
stress_exponent_n_dc3.0NoneStress exponent for dislocation creep for wet anorthite aggregate (Rybacki et al., 2006).
activation_energy_dc345.0kJ/molActivation energy for dislocation creep for wet anorthite aggregate (Rybacki et al., 2006).
activation_volume_dc38.0J/MPa/molActivation volume for dislocation creep for wet anorthite aggregate (Rybacki et al., 2006).
shear_modulus4.0e10PaShear modulus.
cohesion_initial2.0e7PaCohesion at initial strain.
cohesion_final1.0e7PaCohesion at final strain.
friction_angle_initial30.0DegreesFriction angle at initial strain.
friction_angle_final7.0DegreesFriction angle at final strain.
strain_initial0.0NoneInitial strain used for cohesion and friction angle.
strain_final1.0NoneFinal strain used for cohesion and friction angle.
heat_capacity800.0J/kg/KReference heat capacity in Waples model (Hantschel and Kauerauf, 2010).
thermal_conductivity_ref2.5W/m/KReference thermal conductivity parameter for use in Sekiguchi-Waples model (Hantschel and Kauerauf, 2010).
radiogenic_heat_production5.0e-7W/m^3Radiogenic heat production (Hantschel and Kauerauf, 2010).