OGS
undamped.prj
<
OpenGeoSysProject
>
<
meshes
>
<
mesh
>mesh_1d.vtu</mesh>
<
mesh
>left.vtu</mesh>
<
mesh
>right.vtu</mesh>
</meshes>
<
python_script
>python_bc.py</python_script>
<
processes
>
<
process
>
<
name
>HC</name>
<
type
>
HEAT_CONDUCTION
</type>
<
integration_order
>2</integration_order>
<
process_variables
>
<
process_variable
>temperature</process_variable>
</process_variables>
</process>
</processes>
<
media
>
<
medium
id
="0">
<
phases
/>
<
properties
>
<
property
>
<
name
>thermal_conductivity</name>
<
type
>
Constant
</type>
<
value
>1.0</value>
</property>
<
property
>
<
name
>density</name>
<
type
>
Constant
</type>
<
value
>1.0</value>
</property>
<
property
>
<
name
>specific_heat_capacity</name>
<
type
>
Constant
</type>
<
value
>1.0</value>
</property>
<
property
>
<
name
>reference_temperature</name>
<
type
>
Constant
</type>
<
value
>0.0</value>
</property>
</properties>
</medium>
</media>
<
time_loop
>
<
processes
>
<
process
ref
="HC">
<
nonlinear_solver
>picard</nonlinear_solver>
<
convergence_criterion
>
<
type
>
DeltaX
</type>
<
norm_type
>NORM2</norm_type>
<
abstol
>1e-10</abstol>
</convergence_criterion>
<
time_discretization
>
<
type
>
BackwardEuler
</type>
</time_discretization>
<
time_stepping
>
<
type
>
SingleStep
</type>
</time_stepping>
</process>
</processes>
<
output
>
<
type
>
VTK
</type>
<
prefix
>out</prefix>
<
variables
>
<
variable
>temperature</variable>
</variables>
</output>
</time_loop>
<
parameters
>
<
parameter
>
<
name
>T_left</name>
<
type
>
Constant
</type>
<
value
>0</value>
</parameter>
</parameters>
<
process_variables
>
<
process_variable
>
<
name
>temperature</name>
<
components
>1</components>
<
order
>1</order>
<
initial_condition
>T_left</initial_condition>
<
boundary_conditions
>
<
boundary_condition
>
<
mesh
>left</mesh>
<
type
>
Dirichlet
</type>
<
parameter
>T_left</parameter>
</boundary_condition>
<
boundary_condition
>
<
mesh
>right</mesh>
<
type
>
Python
</type>
<
bc_object
>nonlinear_robin_bc</bc_object>
</boundary_condition>
</boundary_conditions>
</process_variable>
</process_variables>
<
nonlinear_solvers
>
<
nonlinear_solver
>
<
name
>picard</name>
<
type
>
Picard
</type>
<
max_iter
>200</max_iter>
<
linear_solver
>ls1</linear_solver>
</nonlinear_solver>
</nonlinear_solvers>
<
linear_solvers
>
<
linear_solver
>
<
name
>ls1</name>
<
eigen
>
<
solver_type
>CG</solver_type>
<
precon_type
>DIAGONAL</precon_type>
<
max_iteration_step
>10000</max_iteration_step>
<
error_tolerance
>1e-14</error_tolerance>
</eigen>
</linear_solver>
</linear_solvers>
<
test_definition
>
<
vtkdiff
>
<
file
>out_ts_1_t_1.000000.vtu</file>
<
field
>temperature</field>
<
absolute_tolerance
>1e-12</absolute_tolerance>
<
relative_tolerance
>0</relative_tolerance>
</vtkdiff>
</test_definition>
</OpenGeoSysProject>
OGS CTests—Project Files
Parabolic
T
PicardDamping
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