OGS
arehs-salt-THM01_0.prj
<
OpenGeoSysProject
>
<
meshes
>
<
mesh
>arehs-salt-M_ts_1_t_1.000000.vtu</mesh>
<
mesh
>geometry_left_top_corner.vtu</mesh>
<
mesh
>geometry_right_top_corner.vtu</mesh>
<
mesh
>geometry_left.vtu</mesh>
<
mesh
>geometry_right.vtu</mesh>
<
mesh
>geometry_top.vtu</mesh>
<
mesh
>geometry_bottom.vtu</mesh>
</meshes>
<
processes
>
<
process
>
<
name
>THM</name>
<
type
>
THERMO_HYDRO_MECHANICS
</type>
<
integration_order
>4</integration_order>
<constitutive_relation>
<type>
LinearElasticIsotropic
</type>
<
youngs_modulus
>E_Deckgebirge</youngs_modulus>
<
poissons_ratio
>nu_Deckgebirge</poissons_ratio>
</constitutive_relation>
<constitutive_relation id="1">
<type>
LinearElasticIsotropic
</type>
<
youngs_modulus
>E_Nebengebirge</youngs_modulus>
<
poissons_ratio
>nu_Nebengebirge</poissons_ratio>
</constitutive_relation>
<constitutive_relation id="2">
<type>
CreepBGRa
</type>
<youngs_modulus>E_Salzgestein</youngs_modulus>
<poissons_ratio>nu_Salzgestein</poissons_ratio>
<
a
>A</a>
<
n
>n</n>
<
sigma0
>sigma_f</sigma0>
<
q
>Q</q>
<
nonlinear_solver
>
<maximum_iterations>4000</maximum_iterations>
<residuum_tolerance>3.0e-5</residuum_tolerance>
<increment_tolerance>5.0e-5</increment_tolerance>
</nonlinear_solver>
</constitutive_relation>
<constitutive_relation id="3">
<type>
LinearElasticIsotropic
</type>
<
youngs_modulus
>E_Grundgebirge</youngs_modulus>
<
poissons_ratio
>nu_Grundgebirge</poissons_ratio>
</constitutive_relation>
<
process_variables
>
<
displacement
>displacement</displacement>
<
pressure
>pressure</pressure>
<
temperature
>temperature</temperature>
</process_variables>
<
secondary_variables
>
<
secondary_variable
name="sigma" />
<
secondary_variable
name="epsilon" />
</secondary_variables>
<
specific_body_force
>0.0 -9.81</specific_body_force>
</process>
</processes>
<
media
>
<
medium
id
="0">
<
phases
>
<
phase
>
<
type
>
AqueousLiquid
</type>
<
properties
>
<
property
>
<
name
>thermal_conductivity</name>
<
type
>
Constant
</type>
<
value
>0.6</value>
</property>
<
property
>
<
name
>specific_heat_capacity</name>
<
type
>
Constant
</type>
<
value
>4280.0</value>
</property>
<
property
>
<
name
>viscosity</name>
<
type
>
Constant
</type>
<
value
>1.e-3</value>
</property>
<
property
>
<
name
>density</name>
<
type
>
Linear
</type>
<
reference_value
>1000.0</reference_value>
<
independent_variable
>
<
variable_name
>liquid_phase_pressure</variable_name>
<
reference_condition
>1e5</reference_condition>
<
slope
>4.6511627906976743356e-10</slope>
</independent_variable>
</property>
</properties>
</phase>
<
phase
>
<
type
>
Solid
</type>
<
properties
>
<
property
>
<
name
>thermal_conductivity</name>
<
type
>
Parameter
</type>
<
parameter_name
>lambda_rock</parameter_name>
</property>
<
property
>
<
name
>density</name>
<
type
>
Parameter
</type>
<
parameter_name
>rho_rock</parameter_name>
</property>
<
property
>
<
name
>specific_heat_capacity</name>
<
type
>
Parameter
</type>
<
parameter_name
>c_rock</parameter_name>
</property>
<
property
>
<
name
>thermal_expansivity</name>
<
type
>
Constant
</type>
<
value
>2e-6</value>
</property>
</properties>
</phase>
</phases>
<
properties
>
<
property
>
<
name
>permeability</name>
<
type
>
Constant
</type>
<
value
>1.e-11</value>
</property>
<
property
>
<
name
>biot_coefficient</name>
<
type
>
Constant
</type>
<
value
>1.0</value>
</property>
<
property
>
<
name
>porosity</name>
<
type
>
Constant
</type>
<
value
>0.1</value>
</property>
<
property
>
<
name
>storage</name>
<
type
>
Constant
</type>
<
value
>0.0</value>
</property>
<
property
>
<
name
>thermal_conductivity</name>
<
type
>
EffectiveThermalConductivityPorosityMixing
</type>
</property>
</properties>
</medium>
<
medium
id
="1">
<
phases
>
<
phase
>
<
type
>
AqueousLiquid
</type>
<
properties
>
<
property
>
<
name
>thermal_conductivity</name>
<
type
>
Constant
</type>
<
value
>0.6</value>
</property>
<
property
>
<
name
>specific_heat_capacity</name>
<
type
>
Constant
</type>
<
value
>4280.0</value>
</property>
<
property
>
<
name
>viscosity</name>
<
type
>
Constant
</type>
<
value
>1.e-3</value>
</property>
<
property
>
<
name
>density</name>
<
type
>
Linear
</type>
<
reference_value
>1000.0</reference_value>
<
independent_variable
>
<
variable_name
>liquid_phase_pressure</variable_name>
<
reference_condition
>1e5</reference_condition>
<
slope
>4.6511627906976743356e-10</slope>
</independent_variable>
</property>
</properties>
</phase>
<
phase
>
<
type
>
Solid
</type>
<
properties
>
<
property
>
<
name
>thermal_conductivity</name>
<
type
>
Parameter
</type>
<
parameter_name
>lambda_rock</parameter_name>
</property>
<
property
>
<
name
>density</name>
<
type
>
Parameter
</type>
<
parameter_name
>rho_rock</parameter_name>
</property>
<
property
>
<
name
>specific_heat_capacity</name>
<
type
>
Parameter
</type>
<
parameter_name
>c_rock</parameter_name>
</property>
<
property
>
<
name
>thermal_expansivity</name>
<
type
>
Constant
</type>
<
value
>2e-6</value>
</property>
</properties>
</phase>
</phases>
<
properties
>
<
property
>
<
name
>permeability</name>
<
type
>
Constant
</type>
<
value
>1.e-14</value>
</property>
<
property
>
<
name
>biot_coefficient</name>
<
type
>
Constant
</type>
<
value
>1.0</value>
</property>
<
property
>
<
name
>porosity</name>
<
type
>
Constant
</type>
<
value
>0.01</value>
</property>
<
property
>
<
name
>storage</name>
<
type
>
Constant
</type>
<
value
>0.0</value>
</property>
<
property
>
<
name
>thermal_conductivity</name>
<
type
>
EffectiveThermalConductivityPorosityMixing
</type>
</property>
</properties>
</medium>
<
medium
id
="2">
<
phases
>
<
phase
>
<
type
>
AqueousLiquid
</type>
<
properties
>
<
property
>
<
name
>thermal_conductivity</name>
<
type
>
Constant
</type>
<
value
>0.6</value>
</property>
<
property
>
<
name
>specific_heat_capacity</name>
<
type
>
Constant
</type>
<
value
>4280.0</value>
</property>
<
property
>
<
name
>viscosity</name>
<
type
>
Constant
</type>
<
value
>1.e-3</value>
</property>
<
property
>
<
name
>density</name>
<
type
>
Linear
</type>
<
reference_value
>1000.0</reference_value>
<
independent_variable
>
<
variable_name
>liquid_phase_pressure</variable_name>
<
reference_condition
>1e5</reference_condition>
<
slope
>4.6511627906976743356e-10</slope>
</independent_variable>
</property>
</properties>
</phase>
<
phase
>
<
type
>
Solid
</type>
<
properties
>
<
property
>
<
name
>thermal_conductivity</name>
<
type
>
Parameter
</type>
<
parameter_name
>lambda_salt</parameter_name>
</property>
<
property
>
<
name
>density</name>
<
type
>
Parameter
</type>
<
parameter_name
>rho_salt</parameter_name>
</property>
<
property
>
<
name
>thermal_conductivity</name>
<
type
>
Parameter
</type>
<
parameter_name
>lambda_salt</parameter_name>
</property>
<
property
>
<
name
>specific_heat_capacity</name>
<
type
>
Parameter
</type>
<
parameter_name
>c_salt</parameter_name>
</property>
<
property
>
<
name
>thermal_expansivity</name>
<
type
>
Constant
</type>
<
value
>4e-5</value>
</property>
</properties>
</phase>
</phases>
<
properties
>
<
property
>
<
name
>permeability</name>
<
type
>
Constant
</type>
<
value
>1.e-21</value>
</property>
<
property
>
<
name
>biot_coefficient</name>
<
type
>
Constant
</type>
<
value
>1.0</value>
</property>
<
property
>
<
name
>porosity</name>
<
type
>
Constant
</type>
<
value
>1.0e-6</value>
</property>
<
property
>
<
name
>storage</name>
<
type
>
Constant
</type>
<
value
>0.0</value>
</property>
<
property
>
<
name
>thermal_conductivity</name>
<
type
>
EffectiveThermalConductivityPorosityMixing
</type>
</property>
</properties>
</medium>
<
medium
id
="3">
<
phases
>
<
phase
>
<
type
>
AqueousLiquid
</type>
<
properties
>
<
property
>
<
name
>thermal_conductivity</name>
<
type
>
Constant
</type>
<
value
>0.6</value>
</property>
<
property
>
<
name
>specific_heat_capacity</name>
<
type
>
Constant
</type>
<
value
>4280.0</value>
</property>
<
property
>
<
name
>viscosity</name>
<
type
>
Constant
</type>
<
value
>1.e-3</value>
</property>
<
property
>
<
name
>density</name>
<
type
>
Linear
</type>
<
reference_value
>1000.0</reference_value>
<
independent_variable
>
<
variable_name
>liquid_phase_pressure</variable_name>
<
reference_condition
>1e5</reference_condition>
<
slope
>4.6511627906976743356e-10</slope>
</independent_variable>
</property>
</properties>
</phase>
<
phase
>
<
type
>
Solid
</type>
<
properties
>
<
property
>
<
name
>thermal_conductivity</name>
<
type
>
Parameter
</type>
<
parameter_name
>lambda_rock</parameter_name>
</property>
<
property
>
<
name
>density</name>
<
type
>
Parameter
</type>
<
parameter_name
>rho_rock</parameter_name>
</property>
<
property
>
<
name
>specific_heat_capacity</name>
<
type
>
Parameter
</type>
<
parameter_name
>c_rock</parameter_name>
</property>
<
property
>
<
name
>thermal_expansivity</name>
<
type
>
Constant
</type>
<
value
>2e-5</value>
</property>
</properties>
</phase>
</phases>
<
properties
>
<
property
>
<
name
>permeability</name>
<
type
>
Constant
</type>
<
value
>1.e-17</value>
</property>
<
property
>
<
name
>biot_coefficient</name>
<
type
>
Constant
</type>
<
value
>1.0</value>
</property>
<
property
>
<
name
>porosity</name>
<
type
>
Constant
</type>
<
value
>0.01</value>
</property>
<
property
>
<
name
>storage</name>
<
type
>
Constant
</type>
<
value
>0.0</value>
</property>
<
property
>
<
name
>thermal_conductivity</name>
<
type
>
EffectiveThermalConductivityPorosityMixing
</type>
</property>
</properties>
</medium>
</media>
<
time_loop
>
<
processes
>
<
process
ref
="THM">
<
nonlinear_solver
>basic_newton</nonlinear_solver>
<
convergence_criterion
>
<
type
>
PerComponentDeltaX
</type>
<
norm_type
>NORM2</norm_type>
<
reltols
>1e-7 1e-5 1.e-5 1.e-6</reltols>
<
abstols
>1e-10 1e-10 1.e-10 1.e-10</abstols>
</convergence_criterion>
<
time_discretization
>
<
type
>
BackwardEuler
</type>
</time_discretization>
<
time_stepping
>
<
type
>
FixedTimeStepping
</type>
<
t_initial
>0</t_initial>
<
t_end
>15.768e+10</t_end>
<
timesteps
>
<
pair
>
<
repeat
>5</repeat>
<
delta_t
>3.1536e10</delta_t>
</pair>
</timesteps>
</time_stepping>
</process>
</processes>
<
output
>
<
type
>
VTK
</type>
<
prefix
>arehs-salt-THM0</prefix>
<
timesteps
>
<
pair
>
<
repeat
>1</repeat>
<
each_steps
>5</each_steps>
</pair>
</timesteps>
<
variables
>
<
variable
>displacement</variable>
<
variable
>pressure</variable>
<
variable
>temperature</variable>
<
variable
>sigma</variable>
<
variable
>epsilon</variable>
</variables>
<
suffix
>
ts
{:timestep}_t_{:time}</suffix>
</output>
</time_loop>
<
parameters
>
<
parameter
>
<
name
>lambda_salt</name>
<
type
>
Constant
</type>
<
value
>5.8</value>
</parameter>
<
parameter
>
<
name
>c_salt</name>
<
type
>
Constant
</type>
<
value
>860</value>
</parameter>
<
parameter
>
<
name
>rho_salt</name>
<
type
>
Constant
</type>
<
value
>2170</value>
</parameter>
<
parameter
>
<
name
>lambda_rock</name>
<
type
>
Constant
</type>
<
value
>2.0</value>
</parameter>
<
parameter
>
<
name
>c_rock</name>
<
type
>
Constant
</type>
<
value
>1000</value>
</parameter>
<
parameter
>
<
name
>rho_rock</name>
<
type
>
Constant
</type>
<
value
>2500</value>
</parameter>
<
parameter
>
<
name
>E_Deckgebirge</name>
<
type
>
Constant
</type>
<
value
>7.7e9</value>
</parameter>
<
parameter
>
<
name
>E_Nebengebirge</name>
<
type
>
Constant
</type>
<
value
>15.6e9</value>
</parameter>
<
parameter
>
<
name
>E_Salzgestein</name>
<
type
>
Constant
</type>
<
value
>25e9</value>
</parameter>
<
parameter
>
<
name
>E_Grundgebirge</name>
<
type
>
Constant
</type>
<
value
>15.6e9</value>
</parameter>
<
parameter
>
<
name
>nu_Deckgebirge</name>
<
type
>
Constant
</type>
<
value
>0.28</value>
</parameter>
<
parameter
>
<
name
>nu_Nebengebirge</name>
<
type
>
Constant
</type>
<
value
>0.3</value>
</parameter>
<
parameter
>
<
name
>nu_Salzgestein</name>
<
type
>
Constant
</type>
<
value
>0.25</value>
</parameter>
<
parameter
>
<
name
>nu_Grundgebirge</name>
<
type
>
Constant
</type>
<
value
>0.3</value>
</parameter>
<
parameter
>
<
name
>A</name>
<
type
>
Constant
</type>
<
value
>3.3333333333333335e-05</value>
</parameter>
<
parameter
>
<
name
>n</name>
<
type
>
Constant
</type>
<
value
>5.0</value>
</parameter>
<
parameter
>
<
name
>sigma_f</name>
<
type
>
Constant
</type>
<
value
>1e6</value>
</parameter>
<
parameter
>
<
name
>Q</name>
<
type
>
Constant
</type>
<
value
>54000</value>
</parameter>
<
parameter
>
<
name
>displacement0</name>
<
type
>
Constant
</type>
<
values
>0 0</values>
</parameter>
<
parameter
>
<
name
>zero</name>
<
type
>
Constant
</type>
<
value
>0</value>
</parameter>
<
parameter
>
<
name
>initial_temperature_lin</name>
<
type
>
Function
</type>
<
expression
>281.65 - y*(368.15 - 281.65)
/
3e3</expression>
</parameter>
<
parameter
>
<
name
>p0</name>
<
type
>
Function
</type>
<
expression
>-9810*y</expression>
</parameter>
<
parameter
>
<
name
>p_bc_left</name>
<
type
>
Constant
</type>
<
values
>0.0</values>
</parameter>
<
parameter
>
<
name
>p_recharge</name>
<
type
>
Constant
</type>
<
value
>1.5854895991882295e-09</value>
</parameter>
<
parameter
>
<
name
>p_bc_right</name>
<
type
>
Constant
</type>
<
values
>1.0e+6</values>
</parameter>
<
parameter
>
<
name
>temp_top</name>
<
type
>
Constant
</type>
<
value
>281.65</value>
</parameter>
<
parameter
>
<
name
>GeothermHeatFlux</name>
<
type
>
Constant
</type>
<
values
>50e-3</values>
</parameter>
</parameters>
<
process_variables
>
<
process_variable
>
<
name
>displacement</name>
<
components
>2</components>
<
order
>2</order>
<
initial_condition
>displacement0</initial_condition>
<
boundary_conditions
>
<
boundary_condition
>
<
mesh
>geometry_left</mesh>
<
type
>
Dirichlet
</type>
<
component
>0</component>
<
parameter
>zero</parameter>
</boundary_condition>
<
boundary_condition
>
<
mesh
>geometry_right</mesh>
<
type
>
Dirichlet
</type>
<
component
>0</component>
<
parameter
>zero</parameter>
</boundary_condition>
<
boundary_condition
>
<
mesh
>geometry_bottom</mesh>
<
type
>
Dirichlet
</type>
<
component
>1</component>
<
parameter
>zero</parameter>
</boundary_condition>
</boundary_conditions>
</process_variable>
<
process_variable
>
<
name
>pressure</name>
<
components
>1</components>
<
order
>1</order>
<
initial_condition
>p0</initial_condition>
<
boundary_conditions
>
<
boundary_condition
>
<
mesh
>geometry_top</mesh>
<
type
>
Neumann
</type>
<
parameter
>p_recharge</parameter>
</boundary_condition>
<
boundary_condition
>
<
mesh
>geometry_left_top_corner</mesh>
<
type
>
Dirichlet
</type>
<
parameter
>p_bc_left</parameter>
</boundary_condition>
<
boundary_condition
>
<
mesh
>geometry_right_top_corner</mesh>
<
type
>
Dirichlet
</type>
<
parameter
>p_bc_right</parameter>
</boundary_condition>
</boundary_conditions>
</process_variable>
<
process_variable
>
<
name
>temperature</name>
<
components
>1</components>
<
order
>1</order>
<
initial_condition
>initial_temperature_lin</initial_condition>
<
boundary_conditions
>
<
boundary_condition
>
<
mesh
>geometry_top</mesh>
<
type
>
Dirichlet
</type>
<
parameter
>temp_top</parameter>
</boundary_condition>
<
boundary_condition
>
<
mesh
>geometry_bottom</mesh>
<
type
>
Neumann
</type>
<
parameter
>GeothermHeatFlux</parameter>
</boundary_condition>
</boundary_conditions>
</process_variable>
</process_variables>
<
nonlinear_solvers
>
<
nonlinear_solver
>
<
name
>basic_newton</name>
<
type
>
Newton
</type>
<
max_iter
>50</max_iter>
<
linear_solver
>general_linear_solver</linear_solver>
</nonlinear_solver>
</nonlinear_solvers>
<
linear_solvers
>
<
linear_solver
>
<
name
>general_linear_solver</name>
<
lis
>-i bicgstab -p jacobi -tol 1e-11 -maxiter 10000</lis>
<
eigen
>
<
solver_type
>SparseLU</solver_type>
<
scaling
>true</scaling>
</eigen>
</linear_solver>
</linear_solvers>
</OpenGeoSysProject>
OGS CTests—Project Files
ThermoHydroMechanics
BGRaCreepAndInitialStressAtIP_AREHS
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