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input_file_transient_doesnt_converge.i
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input_file_transient_doesnt_converge.i
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### mpiexec -n 4 ~/moose_beh/moose_beh-opt -i /home/moose/XXXXXX_HR02_G01HTv2_Q02HfullSeq/XXXXXX2023052_R01_HR02_Q02HfullSeq_part1_TR_PS_test.i --t --color off --n-threads=8 > XXXXXX2023052_R01_HR02_Q02HfullSeq_part1_TR_PS_SEVDA_newflux.log 2>&1
### this file 'G01HTv2_Q02HfullSeq\XXXXXX2023052_R01_HR02_Q02HfullSeq_part1.i' was created
### by user 'arnd' on 'NIMBUS (win32)'
### on '2024-03-15 12:15:10'
### via '4_createMooseInputFiles_update_readfileNEW.py'
### using 'XXXXXX2023052_R01_HR02_Q02HfullSeq_DATALIST2.csv'
###
### this file covers the following 150-3 mining steps:
### # NOT: 'F001_Y2018_M12', 'F002_Y2019_M06', 'F003_Y2019_M10',
### # BUT:
### [ 'F004_Y2019_M11', 'F005_Y2019_M12', 'F006_Y2020_M01',
### ...
### 'F150_Y2032_M01']
###
### ################################################################### #######
### Global Parameters
### ################################################################### #######
### gravity vector
gravity = '0 0 -9.81' # in m/s^2
### bounding box and zLevels
zLevelPwpBC = 10460.000
### moose porous flow dictator (to be used in every block)
[GlobalParams]
PorousFlowDictator = uobj_pfdictator
[]
[UserObjects]
[uobj_pfdictator]
type = PorousFlowDictator
porous_flow_vars = porepressure_L1
number_fluid_phases = 1
number_fluid_components = 1
execute_on = 'TIMESTEP_END' # the default
# execute_on = 'INITIAL NONLINEAR TIMESTEP_END'
[]
[]
### ################################################################### #######
### MESH (NODE, ELEMENTS) AND
### SETS (ELSETS, SRFSETS, NSETS) AS WELL AS
### MPCS
### ################################################################### #######
[Mesh]
construct_node_list_from_side_list = true
construct_side_list_from_node_list = false
build_all_side_lowerd_mesh = false
allow_renumbering = false
add_subdomain_ids = '3 4'
### include abaqus mesh
[mesh_G01HTv2]
type = FileMeshGenerator
file = 'XXXXXX2023052_R01_HR02_G01HTv2_Q02HfullSeq_part0_F000.e'
allow_renumbering = false
[]
[subdomains]
type = ParsedSubdomainMeshGenerator
input = mesh_G01HTv2
combinatorial_geometry = 'x >= -10000 & y >= -10000 & z >= -10000 '
block_id = 0
[]
[separate]
type = MeshRepairGenerator
input = 'subdomains'
separate_blocks_by_element_types = true
[]
[]
[UserObjects]
[1]
type = CoupledVarThresholdElementSubdomainModifier
coupled_var = 'state_M0'
block = '1 3' # tet element block
criterion_type = EQUAL
threshold = 1
subdomain_id = 3
complement_subdomain_id = 1
moving_boundary_name = moving_boundary
execute_on = 'TIMESTEP_BEGIN'
apply_initial_conditions = true
[]
# [2]
# type = CoupledVarThresholdElementSubdomainModifier
# coupled_var = 'state_M0'
# block = '2 4' # wedge element block
# criterion_type = EQUAL
# threshold = 1
# subdomain_id = 4
# complement_subdomain_id = 2
# execute_on = 'TIMESTEP_BEGIN TIMESTEP_END'
# apply_initial_conditions = false
# []
[]
[MPCbe]
csv_file = 'XXXXXX2023052_G02HTv2_MPCbe.csv'
header = true
offset = -1
variable = porepressure_L1
# penalty = 1e10
# penalty = 1e9
penalty = 1e6
[]
### ################################################################### #######
### MATERIAL PROPERTIES
### ################################################################### #######
### LIST OF REQUIRED MATPROPS (ACCORDING TO [KERNELS] DEFINED IN
### SECTION 'HYDROGEOLOGICAL PROBLEM DEFINTION' BELOW):
###
### - FLUID PROPERTIES (IE., FLUID DENSITY, FLUID VISCOSITY, ...)
### - ROCK PERMEABILITY TENSOR
### - RELATIVE PERMEABILITY
### - SATURATION
### - POROSITY
###
[Materials]
###
### MATPROPS --- FLUID PROPERTIES
###
[mat_groundwater]
### this changes all time-units from seconds to years
### CAUTION: within this input-file, define all quantities related to time
### accordingly, except in [FluidProperties], but everywhere else
type = PorousFlowSingleComponentFluid
fp = the_simple_fluid
phase = 0
time_unit = years
[]
###
### MATPROPS --- ROCK PERMEABILITY TENSOR
###
[mat_permeability_tensor]
### choose one of the following options:
### option-BEH-isotropic:
type = PorousFlowPermeabilityPropDepIsotropicFromCsv3
read_prop_user_object = uobj_read_perm_fromCsv
damage = prop_damage
state = prop_state
state_values = '1 2 3'
perm_state_values = '1e-15 5e-11 1e-12'
[]
###
### MATPROPS --- RELATIVE PERMEABILITY
###
[mat_relative_permeability]
### choose one of the following options:
# ### option-FLAC3: (FLAC, see https://mooseframework.inl.gov/source/materials/PorousFlowRelativePermeabilityFLAC.html)
type = PorousFlowRelativePermeabilityFLACBE
phase = 0
m = 2
state = prop_state # Kr at excav elements = 1
cap_relperm = true
cap_relperm_value = 0.1
[]
###
### MATPROPS --- SATURATION
###
[mat_saturation]
type = PorousFlow1PhaseP
porepressure = porepressure_L1
# capillary_pressure = uobj_saturation_optionConst
capillary_pressure = uobj_saturation_optionVG
[]
###
### MATPROPS --- POROSITY
###
# [mat_porosity]
# type = PorousFlowPorosityConst
# porosity = 0.25
# constant_on = NONE
# []
[mat_porosity]
type = PorousFlowPorosityFromCSV
read_prop_user_object = uobj_read_poro_fromCsv
state = prop_state
state_values = '1 2'
poro_state_values = '1 0.25'
[]
###
### MATPROPS --- FLUID TEMPERATURE (NEEDED FOR SOME FLUID PROPERTIES)
###
[mat_temperature]
type = PorousFlowTemperature
[]
###
### MATPROPS --- FLUID MASS FRACTION (NEEDED FOR SOME FLUID PROPERTIES)
###
[mat_massfrac]
type = PorousFlowMassFraction
[]
###
### MATPROPS --- DAMAGE AND STATE
###
[mat_damage]
type = GenericConstantArrayBEH
prop_name = prop_damage
read_prop_user_object = uobj_read_damage_fromCsv
csv_col_index = 1
[]
[mat_state]
type = GenericConstantArrayBEH
prop_name = prop_state
read_prop_user_object = uobj_read_state_fromCsv
csv_col_index = 1
[]
[]
### -------------------------------------------------
### QUANTITIES ON WHICH THE MATPROPS ABOVE DEPEND ON:
### -------------------------------------------------
###
### MATPROP-DEPENDENCY --- THE SIMPLE FLUID (GROUNDWATER PROPERTIES)
###
[FluidProperties]
[the_simple_fluid]
type = SimpleFluidProperties
[]
[]
###
### MATPROP-DEPENDENCY --- CAPILLARY PRESSURE (NEEDED FOR SATURATION)
###
[UserObjects]
[uobj_saturation_optionVG]
### ### vanGenuchten (https://mooseframework.inl.gov/source/userobjects/PorousFlowCapillaryPressureVG.html)
type = PorousFlowCapillaryPressureVG
alpha = 1e-6
m = 0.6
log_extension = True
sat_lr = 0.2
[]
[]
###
### MATPROP-DEPENDENCY --- PERMEABILITY-CSV-READER
###
[UserObjects]
[uobj_read_perm_fromCsv]
type = PropertyReadFile
prop_file_name = 'XXXXXX2023052_G01HTv2_MATERIALS_M01H_D02H_PERM.csv'
nprop = 3 # that is (kiso,RMDmax,Kmax)
# nprop = 8 # that is (kxx,kyy,kzz,kxy,kxz,kyz,RMDmax,Kmax)
read_type = element
execute_on = 'TIMESTEP_BEGIN'
[]
[]
###
### MATPROP-DEPENDENCY --- POROSITY-CSV-READER
###
[UserObjects]
[uobj_read_poro_fromCsv]
type = PropertyReadFile
prop_file_name = 'XXXXXX2023052_G01HTv2_MATERIALS_M01H_D02H_PORO.csv'
nprop = 1
read_type = element
execute_on = 'TIMESTEP_BEGIN'
[]
[]
###
### MATPROP-DEPENDENCY --- DAMAGE AND STATE CSV-READERS
###
[UserObjects]
[uobj_read_damage_fromCsv]
type = PropertyReadFileTimeBased
prop_file_name = 'LOGP_FROM_R01/EXCHG_0004_LOGP.inp
LOGP_FROM_R01/EXCHG_0005_LOGP.inp
LOGP_FROM_R01/EXCHG_0006_LOGP.inp
LOGP_FROM_R01/EXCHG_0007_LOGP.inp
LOGP_FROM_R01/EXCHG_0008_LOGP.inp
LOGP_FROM_R01/EXCHG_0009_LOGP.inp
LOGP_FROM_R01/EXCHG_0010_LOGP.inp
LOGP_FROM_R01/EXCHG_0011_LOGP.inp
LOGP_FROM_R01/EXCHG_0012_LOGP.inp
LOGP_FROM_R01/EXCHG_0013_LOGP.inp
LOGP_FROM_R01/EXCHG_0014_LOGP.inp
LOGP_FROM_R01/EXCHG_0015_LOGP.inp
LOGP_FROM_R01/EXCHG_0016_LOGP.inp
LOGP_FROM_R01/EXCHG_0017_LOGP.inp
LOGP_FROM_R01/EXCHG_0018_LOGP.inp
LOGP_FROM_R01/EXCHG_0019_LOGP.inp
LOGP_FROM_R01/EXCHG_0020_LOGP.inp
LOGP_FROM_R01/EXCHG_0021_LOGP.inp
LOGP_FROM_R01/EXCHG_0022_LOGP.inp
LOGP_FROM_R01/EXCHG_0023_LOGP.inp
LOGP_FROM_R01/EXCHG_0024_LOGP.inp
LOGP_FROM_R01/EXCHG_0025_LOGP.inp
LOGP_FROM_R01/EXCHG_0026_LOGP.inp
LOGP_FROM_R01/EXCHG_0027_LOGP.inp
LOGP_FROM_R01/EXCHG_0028_LOGP.inp
LOGP_FROM_R01/EXCHG_0029_LOGP.inp
LOGP_FROM_R01/EXCHG_0030_LOGP.inp
LOGP_FROM_R01/EXCHG_0031_LOGP.inp
LOGP_FROM_R01/EXCHG_0032_LOGP.inp
LOGP_FROM_R01/EXCHG_0033_LOGP.inp
LOGP_FROM_R01/EXCHG_0034_LOGP.inp
LOGP_FROM_R01/EXCHG_0035_LOGP.inp
LOGP_FROM_R01/EXCHG_0036_LOGP.inp
LOGP_FROM_R01/EXCHG_0037_LOGP.inp
LOGP_FROM_R01/EXCHG_0038_LOGP.inp
LOGP_FROM_R01/EXCHG_0039_LOGP.inp
LOGP_FROM_R01/EXCHG_0040_LOGP.inp
LOGP_FROM_R01/EXCHG_0041_LOGP.inp
LOGP_FROM_R01/EXCHG_0042_LOGP.inp
LOGP_FROM_R01/EXCHG_0043_LOGP.inp
LOGP_FROM_R01/EXCHG_0044_LOGP.inp
LOGP_FROM_R01/EXCHG_0045_LOGP.inp
LOGP_FROM_R01/EXCHG_0046_LOGP.inp
LOGP_FROM_R01/EXCHG_0047_LOGP.inp
LOGP_FROM_R01/EXCHG_0048_LOGP.inp
LOGP_FROM_R01/EXCHG_0049_LOGP.inp
LOGP_FROM_R01/EXCHG_0050_LOGP.inp
LOGP_FROM_R01/EXCHG_0051_LOGP.inp
LOGP_FROM_R01/EXCHG_0052_LOGP.inp
LOGP_FROM_R01/EXCHG_0053_LOGP.inp
LOGP_FROM_R01/EXCHG_0054_LOGP.inp
LOGP_FROM_R01/EXCHG_0055_LOGP.inp
LOGP_FROM_R01/EXCHG_0056_LOGP.inp
LOGP_FROM_R01/EXCHG_0057_LOGP.inp
LOGP_FROM_R01/EXCHG_0058_LOGP.inp
LOGP_FROM_R01/EXCHG_0059_LOGP.inp
LOGP_FROM_R01/EXCHG_0060_LOGP.inp
LOGP_FROM_R01/EXCHG_0061_LOGP.inp
LOGP_FROM_R01/EXCHG_0062_LOGP.inp
LOGP_FROM_R01/EXCHG_0063_LOGP.inp
LOGP_FROM_R01/EXCHG_0064_LOGP.inp
LOGP_FROM_R01/EXCHG_0065_LOGP.inp
LOGP_FROM_R01/EXCHG_0066_LOGP.inp
LOGP_FROM_R01/EXCHG_0067_LOGP.inp
LOGP_FROM_R01/EXCHG_0068_LOGP.inp
LOGP_FROM_R01/EXCHG_0069_LOGP.inp
LOGP_FROM_R01/EXCHG_0070_LOGP.inp
LOGP_FROM_R01/EXCHG_0071_LOGP.inp
LOGP_FROM_R01/EXCHG_0072_LOGP.inp
LOGP_FROM_R01/EXCHG_0073_LOGP.inp
LOGP_FROM_R01/EXCHG_0074_LOGP.inp
LOGP_FROM_R01/EXCHG_0075_LOGP.inp
LOGP_FROM_R01/EXCHG_0076_LOGP.inp
LOGP_FROM_R01/EXCHG_0077_LOGP.inp
LOGP_FROM_R01/EXCHG_0078_LOGP.inp
LOGP_FROM_R01/EXCHG_0079_LOGP.inp
LOGP_FROM_R01/EXCHG_0080_LOGP.inp
LOGP_FROM_R01/EXCHG_0081_LOGP.inp
LOGP_FROM_R01/EXCHG_0082_LOGP.inp
LOGP_FROM_R01/EXCHG_0083_LOGP.inp
LOGP_FROM_R01/EXCHG_0084_LOGP.inp
LOGP_FROM_R01/EXCHG_0085_LOGP.inp
LOGP_FROM_R01/EXCHG_0086_LOGP.inp
LOGP_FROM_R01/EXCHG_0087_LOGP.inp
LOGP_FROM_R01/EXCHG_0088_LOGP.inp
LOGP_FROM_R01/EXCHG_0089_LOGP.inp
LOGP_FROM_R01/EXCHG_0090_LOGP.inp
LOGP_FROM_R01/EXCHG_0091_LOGP.inp
LOGP_FROM_R01/EXCHG_0092_LOGP.inp
LOGP_FROM_R01/EXCHG_0093_LOGP.inp
LOGP_FROM_R01/EXCHG_0094_LOGP.inp
LOGP_FROM_R01/EXCHG_0095_LOGP.inp
LOGP_FROM_R01/EXCHG_0096_LOGP.inp
LOGP_FROM_R01/EXCHG_0097_LOGP.inp
LOGP_FROM_R01/EXCHG_0098_LOGP.inp
LOGP_FROM_R01/EXCHG_0099_LOGP.inp
LOGP_FROM_R01/EXCHG_0100_LOGP.inp
LOGP_FROM_R01/EXCHG_0101_LOGP.inp
LOGP_FROM_R01/EXCHG_0102_LOGP.inp
LOGP_FROM_R01/EXCHG_0103_LOGP.inp
LOGP_FROM_R01/EXCHG_0104_LOGP.inp
LOGP_FROM_R01/EXCHG_0105_LOGP.inp
LOGP_FROM_R01/EXCHG_0106_LOGP.inp
LOGP_FROM_R01/EXCHG_0107_LOGP.inp
LOGP_FROM_R01/EXCHG_0108_LOGP.inp
LOGP_FROM_R01/EXCHG_0109_LOGP.inp
LOGP_FROM_R01/EXCHG_0110_LOGP.inp
LOGP_FROM_R01/EXCHG_0111_LOGP.inp
LOGP_FROM_R01/EXCHG_0112_LOGP.inp
LOGP_FROM_R01/EXCHG_0113_LOGP.inp
LOGP_FROM_R01/EXCHG_0114_LOGP.inp
LOGP_FROM_R01/EXCHG_0115_LOGP.inp
LOGP_FROM_R01/EXCHG_0116_LOGP.inp
LOGP_FROM_R01/EXCHG_0117_LOGP.inp
LOGP_FROM_R01/EXCHG_0118_LOGP.inp
LOGP_FROM_R01/EXCHG_0119_LOGP.inp
LOGP_FROM_R01/EXCHG_0120_LOGP.inp
LOGP_FROM_R01/EXCHG_0121_LOGP.inp
LOGP_FROM_R01/EXCHG_0122_LOGP.inp
LOGP_FROM_R01/EXCHG_0123_LOGP.inp
LOGP_FROM_R01/EXCHG_0124_LOGP.inp
LOGP_FROM_R01/EXCHG_0125_LOGP.inp
LOGP_FROM_R01/EXCHG_0126_LOGP.inp
LOGP_FROM_R01/EXCHG_0127_LOGP.inp
LOGP_FROM_R01/EXCHG_0128_LOGP.inp
LOGP_FROM_R01/EXCHG_0129_LOGP.inp
LOGP_FROM_R01/EXCHG_0130_LOGP.inp
LOGP_FROM_R01/EXCHG_0131_LOGP.inp
LOGP_FROM_R01/EXCHG_0132_LOGP.inp
LOGP_FROM_R01/EXCHG_0133_LOGP.inp
LOGP_FROM_R01/EXCHG_0134_LOGP.inp
LOGP_FROM_R01/EXCHG_0135_LOGP.inp
LOGP_FROM_R01/EXCHG_0136_LOGP.inp
LOGP_FROM_R01/EXCHG_0137_LOGP.inp
LOGP_FROM_R01/EXCHG_0138_LOGP.inp
LOGP_FROM_R01/EXCHG_0139_LOGP.inp
LOGP_FROM_R01/EXCHG_0140_LOGP.inp
LOGP_FROM_R01/EXCHG_0141_LOGP.inp
LOGP_FROM_R01/EXCHG_0142_LOGP.inp
LOGP_FROM_R01/EXCHG_0143_LOGP.inp
LOGP_FROM_R01/EXCHG_0144_LOGP.inp
LOGP_FROM_R01/EXCHG_0145_LOGP.inp
LOGP_FROM_R01/EXCHG_0146_LOGP.inp
LOGP_FROM_R01/EXCHG_0147_LOGP.inp
LOGP_FROM_R01/EXCHG_0148_LOGP.inp
LOGP_FROM_R01/EXCHG_0149_LOGP.inp
LOGP_FROM_R01/EXCHG_0150_LOGP.inp'
# time_per_file = '1.000 2.000 3.000 4.000 5.000 6.000 7.000 8.000 9.000 10.000 11.000 12.000 13.000 14.000 15.000 16.000 17.000 18.000 19.000 20.000 21.000 22.000 23.000 24.000 25.000 26.000 27.000 28.000 29.000 30.000 31.000 32.000 33.000 34.000 35.000 36.000 37.000 38.000 39.000 40.000 41.000 42.000 43.000 44.000 45.000 46.000 47.000 48.000 49.000 50.000 51.000 52.000 53.000 54.000 55.000 56.000 57.000 58.000 59.000 60.000 61.000 62.000 63.000 64.000 65.000 66.000 67.000 68.000 69.000 70.000 71.000 72.000 73.000 74.000 75.000 76.000 77.000 78.000 79.000 80.000 81.000 82.000 83.000 84.000 85.000 86.000 87.000 88.000 89.000 90.000 91.000 92.000 93.000 94.000 95.000 96.000 97.000 98.000 99.000 100.000 101.000 102.000 103.000 104.000 105.000 106.000 107.000 108.000 109.000 110.000 111.000 112.000 113.000 114.000 115.000 116.000 117.000 118.000 119.000 120.000 121.000 122.000 123.000 124.000 125.000 126.000 127.000 128.000 129.000 130.000 131.000 132.000 133.000 134.000 135.000 136.000 137.000 138.000 139.000 140.000 141.000 142.000 143.000 144.000 145.000 146.000 147.000 148.000 149.000 150.000'
time_per_file = '1.833 2 2.083 2.167 2.25 2.333 2.417 2.5 2.583 2.667 2.75 2.833 2.917 3 3.083 3.167 3.25 3.333 3.417 3.5 3.583 3.667 3.75 3.833 3.917 4 4.083 4.167 4.25 4.333 4.417 4.5 4.583 4.667 4.75 4.833 4.917 5 5.083 5.167 5.25 5.333 5.417 5.5 5.583 5.667 5.75 5.833 5.917 6 6.083 6.167 6.25 6.333 6.417 6.5 6.583 6.667 6.75 6.833 6.917 7 7.083 7.167 7.25 7.333 7.417 7.5 7.583 7.667 7.75 7.833 7.917 8 8.083 8.167 8.25 8.333 8.417 8.5 8.583 8.667 8.75 8.833 8.917 9 9.083 9.167 9.25 9.333 9.417 9.5 9.583 9.667 9.75 9.833 9.917 10 10.083 10.167 10.25 10.333 10.417 10.5 10.583 10.667 10.75 10.833 10.917 11 11.083 11.167 11.25 11.333 11.417 11.5 11.583 11.667 11.75 11.833 11.917 12 12.083 12.167 12.25 12.333 12.417 12.5 12.583 12.667 12.75 12.833 12.917 13 13.083 13.167 13.25 13.333 13.417 13.5 13.583 13.667 13.75 13.833 13.917 14 14.083 '
nprop = 2
read_type = element
execute_on = 'TIMESTEP_BEGIN'
[]
[uobj_read_state_fromCsv]
type = PropertyReadFileTimeBased
prop_file_name = 'STATE_FROM_Q02H/EXCHG_0004_STATE.inp
STATE_FROM_Q02H/EXCHG_0005_STATE.inp
STATE_FROM_Q02H/EXCHG_0006_STATE.inp
STATE_FROM_Q02H/EXCHG_0007_STATE.inp
STATE_FROM_Q02H/EXCHG_0008_STATE.inp
STATE_FROM_Q02H/EXCHG_0009_STATE.inp
STATE_FROM_Q02H/EXCHG_0010_STATE.inp
STATE_FROM_Q02H/EXCHG_0011_STATE.inp
STATE_FROM_Q02H/EXCHG_0012_STATE.inp
STATE_FROM_Q02H/EXCHG_0013_STATE.inp
STATE_FROM_Q02H/EXCHG_0014_STATE.inp
STATE_FROM_Q02H/EXCHG_0015_STATE.inp
STATE_FROM_Q02H/EXCHG_0016_STATE.inp
STATE_FROM_Q02H/EXCHG_0017_STATE.inp
STATE_FROM_Q02H/EXCHG_0018_STATE.inp
STATE_FROM_Q02H/EXCHG_0019_STATE.inp
STATE_FROM_Q02H/EXCHG_0020_STATE.inp
STATE_FROM_Q02H/EXCHG_0021_STATE.inp
STATE_FROM_Q02H/EXCHG_0022_STATE.inp
STATE_FROM_Q02H/EXCHG_0023_STATE.inp
STATE_FROM_Q02H/EXCHG_0024_STATE.inp
STATE_FROM_Q02H/EXCHG_0025_STATE.inp
STATE_FROM_Q02H/EXCHG_0026_STATE.inp
STATE_FROM_Q02H/EXCHG_0027_STATE.inp
STATE_FROM_Q02H/EXCHG_0028_STATE.inp
STATE_FROM_Q02H/EXCHG_0029_STATE.inp
STATE_FROM_Q02H/EXCHG_0030_STATE.inp
STATE_FROM_Q02H/EXCHG_0031_STATE.inp
STATE_FROM_Q02H/EXCHG_0032_STATE.inp
STATE_FROM_Q02H/EXCHG_0033_STATE.inp
STATE_FROM_Q02H/EXCHG_0034_STATE.inp
STATE_FROM_Q02H/EXCHG_0035_STATE.inp
STATE_FROM_Q02H/EXCHG_0036_STATE.inp
STATE_FROM_Q02H/EXCHG_0037_STATE.inp
STATE_FROM_Q02H/EXCHG_0038_STATE.inp
STATE_FROM_Q02H/EXCHG_0039_STATE.inp
STATE_FROM_Q02H/EXCHG_0040_STATE.inp
STATE_FROM_Q02H/EXCHG_0041_STATE.inp
STATE_FROM_Q02H/EXCHG_0042_STATE.inp
STATE_FROM_Q02H/EXCHG_0043_STATE.inp
STATE_FROM_Q02H/EXCHG_0044_STATE.inp
STATE_FROM_Q02H/EXCHG_0045_STATE.inp
STATE_FROM_Q02H/EXCHG_0046_STATE.inp
STATE_FROM_Q02H/EXCHG_0047_STATE.inp
STATE_FROM_Q02H/EXCHG_0048_STATE.inp
STATE_FROM_Q02H/EXCHG_0049_STATE.inp
STATE_FROM_Q02H/EXCHG_0050_STATE.inp
STATE_FROM_Q02H/EXCHG_0051_STATE.inp
STATE_FROM_Q02H/EXCHG_0052_STATE.inp
STATE_FROM_Q02H/EXCHG_0053_STATE.inp
STATE_FROM_Q02H/EXCHG_0054_STATE.inp
STATE_FROM_Q02H/EXCHG_0055_STATE.inp
STATE_FROM_Q02H/EXCHG_0056_STATE.inp
STATE_FROM_Q02H/EXCHG_0057_STATE.inp
STATE_FROM_Q02H/EXCHG_0058_STATE.inp
STATE_FROM_Q02H/EXCHG_0059_STATE.inp
STATE_FROM_Q02H/EXCHG_0060_STATE.inp
STATE_FROM_Q02H/EXCHG_0061_STATE.inp
STATE_FROM_Q02H/EXCHG_0062_STATE.inp
STATE_FROM_Q02H/EXCHG_0063_STATE.inp
STATE_FROM_Q02H/EXCHG_0064_STATE.inp
STATE_FROM_Q02H/EXCHG_0065_STATE.inp
STATE_FROM_Q02H/EXCHG_0066_STATE.inp
STATE_FROM_Q02H/EXCHG_0067_STATE.inp
STATE_FROM_Q02H/EXCHG_0068_STATE.inp
STATE_FROM_Q02H/EXCHG_0069_STATE.inp
STATE_FROM_Q02H/EXCHG_0070_STATE.inp
STATE_FROM_Q02H/EXCHG_0071_STATE.inp
STATE_FROM_Q02H/EXCHG_0072_STATE.inp
STATE_FROM_Q02H/EXCHG_0073_STATE.inp
STATE_FROM_Q02H/EXCHG_0074_STATE.inp
STATE_FROM_Q02H/EXCHG_0075_STATE.inp
STATE_FROM_Q02H/EXCHG_0076_STATE.inp
STATE_FROM_Q02H/EXCHG_0077_STATE.inp
STATE_FROM_Q02H/EXCHG_0078_STATE.inp
STATE_FROM_Q02H/EXCHG_0079_STATE.inp
STATE_FROM_Q02H/EXCHG_0080_STATE.inp
STATE_FROM_Q02H/EXCHG_0081_STATE.inp
STATE_FROM_Q02H/EXCHG_0082_STATE.inp
STATE_FROM_Q02H/EXCHG_0083_STATE.inp
STATE_FROM_Q02H/EXCHG_0084_STATE.inp
STATE_FROM_Q02H/EXCHG_0085_STATE.inp
STATE_FROM_Q02H/EXCHG_0086_STATE.inp
STATE_FROM_Q02H/EXCHG_0087_STATE.inp
STATE_FROM_Q02H/EXCHG_0088_STATE.inp
STATE_FROM_Q02H/EXCHG_0089_STATE.inp
STATE_FROM_Q02H/EXCHG_0090_STATE.inp
STATE_FROM_Q02H/EXCHG_0091_STATE.inp
STATE_FROM_Q02H/EXCHG_0092_STATE.inp
STATE_FROM_Q02H/EXCHG_0093_STATE.inp
STATE_FROM_Q02H/EXCHG_0094_STATE.inp
STATE_FROM_Q02H/EXCHG_0095_STATE.inp
STATE_FROM_Q02H/EXCHG_0096_STATE.inp
STATE_FROM_Q02H/EXCHG_0097_STATE.inp
STATE_FROM_Q02H/EXCHG_0098_STATE.inp
STATE_FROM_Q02H/EXCHG_0099_STATE.inp
STATE_FROM_Q02H/EXCHG_0100_STATE.inp
STATE_FROM_Q02H/EXCHG_0101_STATE.inp
STATE_FROM_Q02H/EXCHG_0102_STATE.inp
STATE_FROM_Q02H/EXCHG_0103_STATE.inp
STATE_FROM_Q02H/EXCHG_0104_STATE.inp
STATE_FROM_Q02H/EXCHG_0105_STATE.inp
STATE_FROM_Q02H/EXCHG_0106_STATE.inp
STATE_FROM_Q02H/EXCHG_0107_STATE.inp
STATE_FROM_Q02H/EXCHG_0108_STATE.inp
STATE_FROM_Q02H/EXCHG_0109_STATE.inp
STATE_FROM_Q02H/EXCHG_0110_STATE.inp
STATE_FROM_Q02H/EXCHG_0111_STATE.inp
STATE_FROM_Q02H/EXCHG_0112_STATE.inp
STATE_FROM_Q02H/EXCHG_0113_STATE.inp
STATE_FROM_Q02H/EXCHG_0114_STATE.inp
STATE_FROM_Q02H/EXCHG_0115_STATE.inp
STATE_FROM_Q02H/EXCHG_0116_STATE.inp
STATE_FROM_Q02H/EXCHG_0117_STATE.inp
STATE_FROM_Q02H/EXCHG_0118_STATE.inp
STATE_FROM_Q02H/EXCHG_0119_STATE.inp
STATE_FROM_Q02H/EXCHG_0120_STATE.inp
STATE_FROM_Q02H/EXCHG_0121_STATE.inp
STATE_FROM_Q02H/EXCHG_0122_STATE.inp
STATE_FROM_Q02H/EXCHG_0123_STATE.inp
STATE_FROM_Q02H/EXCHG_0124_STATE.inp
STATE_FROM_Q02H/EXCHG_0125_STATE.inp
STATE_FROM_Q02H/EXCHG_0126_STATE.inp
STATE_FROM_Q02H/EXCHG_0127_STATE.inp
STATE_FROM_Q02H/EXCHG_0128_STATE.inp
STATE_FROM_Q02H/EXCHG_0129_STATE.inp
STATE_FROM_Q02H/EXCHG_0130_STATE.inp
STATE_FROM_Q02H/EXCHG_0131_STATE.inp
STATE_FROM_Q02H/EXCHG_0132_STATE.inp
STATE_FROM_Q02H/EXCHG_0133_STATE.inp
STATE_FROM_Q02H/EXCHG_0134_STATE.inp
STATE_FROM_Q02H/EXCHG_0135_STATE.inp
STATE_FROM_Q02H/EXCHG_0136_STATE.inp
STATE_FROM_Q02H/EXCHG_0137_STATE.inp
STATE_FROM_Q02H/EXCHG_0138_STATE.inp
STATE_FROM_Q02H/EXCHG_0139_STATE.inp
STATE_FROM_Q02H/EXCHG_0140_STATE.inp
STATE_FROM_Q02H/EXCHG_0141_STATE.inp
STATE_FROM_Q02H/EXCHG_0142_STATE.inp
STATE_FROM_Q02H/EXCHG_0143_STATE.inp
STATE_FROM_Q02H/EXCHG_0144_STATE.inp
STATE_FROM_Q02H/EXCHG_0145_STATE.inp
STATE_FROM_Q02H/EXCHG_0146_STATE.inp
STATE_FROM_Q02H/EXCHG_0147_STATE.inp
STATE_FROM_Q02H/EXCHG_0148_STATE.inp
STATE_FROM_Q02H/EXCHG_0149_STATE.inp
STATE_FROM_Q02H/EXCHG_0150_STATE.inp'
time_per_file = '1.833 2 2.083 2.167 2.25 2.333 2.417 2.5 2.583 2.667 2.75 2.833 2.917 3 3.083 3.167 3.25 3.333 3.417 3.5 3.583 3.667 3.75 3.833 3.917 4 4.083 4.167 4.25 4.333 4.417 4.5 4.583 4.667 4.75 4.833 4.917 5 5.083 5.167 5.25 5.333 5.417 5.5 5.583 5.667 5.75 5.833 5.917 6 6.083 6.167 6.25 6.333 6.417 6.5 6.583 6.667 6.75 6.833 6.917 7 7.083 7.167 7.25 7.333 7.417 7.5 7.583 7.667 7.75 7.833 7.917 8 8.083 8.167 8.25 8.333 8.417 8.5 8.583 8.667 8.75 8.833 8.917 9 9.083 9.167 9.25 9.333 9.417 9.5 9.583 9.667 9.75 9.833 9.917 10 10.083 10.167 10.25 10.333 10.417 10.5 10.583 10.667 10.75 10.833 10.917 11 11.083 11.167 11.25 11.333 11.417 11.5 11.583 11.667 11.75 11.833 11.917 12 12.083 12.167 12.25 12.333 12.417 12.5 12.583 12.667 12.75 12.833 12.917 13 13.083 13.167 13.25 13.333 13.417 13.5 13.583 13.667 13.75 13.833 13.917 14 14.083 '
nprop = 2
read_type = element
execute_on = 'TIMESTEP_BEGIN'
[]
[]
### ################################################################### #######
### HYDROGEOLOGICAL PROBLEM DEFINTION
### ################################################################### #######
[Problem]
type = 'FEProblem' # (see https://mooseframework.inl.gov/source/problems/FEProblem.html)
### checking parameters:
boundary_restricted_elem_integrity_check = true # default: true
boundary_restricted_node_integrity_check = true # default: true
check_uo_aux_state = false # default: false
error_on_jacobian_nonzero_reallocation = false # default: false
fv_bcs_integrity_check = true # default: true
kernel_coverage_check = false # default: true
material_coverage_check = true # default: true
material_dependency_check = false # default: true
skip_nl_system_check = false # default: false
[]
[Kernels]
[PorousFlowMassTimeDerivative]
type = PorousFlowMassTimeDerivative
### see https://mooseframework.inl.gov/source/kernels/PorousFlowMassTimeDerivative.html
variable = porepressure_L1
fluid_component = 0
multiply_by_density = true
[]
[fluid_flux_fullupwind]
type = PorousFlowAdvectiveFlux # (see https://mooseframework.inl.gov/source/kernels/PorousFlowAdvectiveFlux.html)
variable = porepressure_L1
gravity = '${gravity}'
fluid_component = 0
[]
[]
[Variables]
[porepressure_L1]
type = MooseVariable
order = FIRST
family = LAGRANGE
[]
[]
[AuxVariables]
[saturation_M0]
type = MooseVariableConstMonomial
[]
[porosity_M0]
type = MooseVariableConstMonomial
[]
[charElLength_M0]
type = MooseVariableConstMonomial
[]
[darcy_M0_x]
type = MooseVariableConstMonomial
[]
[darcy_M0_y]
type = MooseVariableConstMonomial
[]
[darcy_M0_z]
type = MooseVariableConstMonomial
[]
# [darcy_M0_normal_srf_boundary]
# type = MooseVariableConstMonomial
# []
[permeability_M0_xx]
type = MooseVariableConstMonomial
[]
[damage_M0]
type = MooseVariableConstMonomial
[]
[state_M0]
type = MooseVariableConstMonomial
[]
[Rel_permeability_M0]
type = MooseVariableConstMonomial
[]
[]
[AuxKernels]
[Rel_permeability_M0]
type = PorousFlowPropertyAux
variable = Rel_permeability_M0
property = relperm
# execute_on = 'LINEAR TIMESTEP_END'
# execute_on = 'NONLINEAR TIMESTEP_END'
# execute_on = 'TIMESTEP_BEGIN TIMESTEP_END'
execute_on = 'INITIAL TIMESTEP_BEGIN LINEAR TIMESTEP_END'
[]
[saturation_M0]
type = PorousFlowPropertyAux
variable = saturation_M0
property = saturation
# execute_on = 'LINEAR TIMESTEP_END' # update saturation each linear interation (moose-default)
# execute_on = 'TIMESTEP_BEGIN TIMESTEP_END' # keep saturation constant within a timestep
# execute_on = 'INITIAL NONLINEAR TIMESTEP_END' # update saturation each nonlinear interation
execute_on = 'INITIAL TIMESTEP_BEGIN LINEAR TIMESTEP_END' # update saturation each linear interation
[]
[porosity_M0]
type = PorousFlowPropertyAux
variable = porosity_M0
property = porosity
# execute_on = 'LINEAR TIMESTEP_END'
# execute_on = 'NONLINEAR TIMESTEP_END'
# execute_on = 'TIMESTEP_BEGIN TIMESTEP_END'
execute_on = 'INITIAL TIMESTEP_BEGIN LINEAR TIMESTEP_END'
[]
[charElLength_M0]
type = ElementLengthAuxsqrtBEH # THIS IS OUR OWN DEVELOPMENT
variable = charElLength_M0
method = min
execute_on = 'INITIAL TIMESTEP_BEGIN LINEAR'
[]
[darcy_M0_x]
# type = PorousFlowDarcyVelocityComponentYearToSec # DEPRECATED
type = PorousFlowDarcyVelocityComponent # THIS IS IN M/YEAR
variable = darcy_M0_x
component = x
gravity = '${gravity}'
execute_on = 'INITIAL LINEAR TIMESTEP_END'
[]
[darcy_M0_y]
# type = PorousFlowDarcyVelocityComponentYearToSec # DEPRECATED
type = PorousFlowDarcyVelocityComponent # THIS IS IN M/YEAR
variable = darcy_M0_y
component = y
gravity = '${gravity}'
execute_on = 'INITIAL LINEAR TIMESTEP_END'
[]
[darcy_M0_z]
# type = PorousFlowDarcyVelocityComponentYearToSec # DEPRECATED
type = PorousFlowDarcyVelocityComponent # THIS IS IN M/YEAR
variable = darcy_M0_z
component = z
gravity = '${gravity}'
execute_on = 'INITIAL LINEAR TIMESTEP_END'
[]
[permeability_M0_xx]
type = PorousFlowPropertyAux
variable = permeability_M0_xx
property = permeability
row = 0
column = 0
execute_on = 'INITIAL TIMESTEP_BEGIN LINEAR TIMESTEP_END'
[]
[damage_M0]
type = MaterialRealAux
variable = damage_M0
property = prop_damage
# execute_on = 'LINEAR TIMESTEP_END' # (moose-default)
# execute_on = 'TIMESTEP_BEGIN TIMESTEP_END' # damage does not change within a timestep
execute_on = 'INITIAL TIMESTEP_BEGIN LINEAR TIMESTEP_END' # damage does not change within a timestep
[]
[state_M0]
type = MaterialRealAux
variable = state_M0
property = prop_state
# execute_on = 'LINEAR TIMESTEP_END' # (moose-default)
# execute_on = 'TIMESTEP_BEGIN TIMESTEP_END' # state does not change within a timestep
execute_on = 'INITIAL TIMESTEP_BEGIN LINEAR TIMESTEP_END' # state does not change within a timestep
[]
[]
### ################################################################### #######
### CONTROLS (turn on/off objects wrt. time)
### ################################################################### #######
### CONTROLS FOR 150-3 STEPS:
[Controls]
[controls0004]
type = ConditionalFunctionEnableControl
enable_objects = ' BCs::bc_drain0004_UG'
# conditional_function = 'if(t>=1.833 & t<2.000,1,0)'
# execute_on = 'INITIAL TIMESTEP_BEGIN TIMESTEP_END'
conditional_function = 'if(t>1.750 & t<=1.833,1,0)'
execute_on = 'INITIAL TIMESTEP_BEGIN NONLINEAR'
[]
[controls0005]
type = ConditionalFunctionEnableControl
enable_objects = ' BCs::bc_drain0005_UG'
# conditional_function = 'if(t>=2.000 & t<2.083,1,0)'
# execute_on = 'INITIAL TIMESTEP_BEGIN TIMESTEP_END'
conditional_function = 'if(t>1.833 & t<=2.000,1,0)'
execute_on = 'INITIAL TIMESTEP_BEGIN NONLINEAR'
[]
[controls0006]
type = ConditionalFunctionEnableControl
enable_objects = ' BCs::bc_drain0006_UG'
# conditional_function = 'if(t>=2.083 & t<2.167,1,0)'
# execute_on = 'INITIAL TIMESTEP_BEGIN TIMESTEP_END'
conditional_function = 'if(t>2.000 & t<=2.083,1,0)'
execute_on = 'INITIAL TIMESTEP_BEGIN NONLINEAR'
[]
[controls0007]
type = ConditionalFunctionEnableControl
enable_objects = ' BCs::bc_drain0007_UG'
# conditional_function = 'if(t>=2.167 & t<2.250,1,0)'
# execute_on = 'INITIAL TIMESTEP_BEGIN TIMESTEP_END'
conditional_function = 'if(t>2.083 & t<=2.167,1,0)'
execute_on = 'INITIAL TIMESTEP_BEGIN NONLINEAR'
[]
[controls0008]
type = ConditionalFunctionEnableControl
enable_objects = ' BCs::bc_drain0008_UG'
# conditional_function = 'if(t>=2.250 & t<2.333,1,0)'
# execute_on = 'INITIAL TIMESTEP_BEGIN TIMESTEP_END'
conditional_function = 'if(t>2.167 & t<=2.250,1,0)'
execute_on = 'INITIAL TIMESTEP_BEGIN NONLINEAR'
[]
[controls0009]
type = ConditionalFunctionEnableControl
enable_objects = ' BCs::bc_drain0009_UG'
# conditional_function = 'if(t>=2.333 & t<2.417,1,0)'
# execute_on = 'INITIAL TIMESTEP_BEGIN TIMESTEP_END'
conditional_function = 'if(t>2.250 & t<=2.333,1,0)'
execute_on = 'INITIAL TIMESTEP_BEGIN NONLINEAR'
[]
[controls0010]
type = ConditionalFunctionEnableControl
enable_objects = ' BCs::bc_drain0010_UG'
# conditional_function = 'if(t>=2.417 & t<2.500,1,0)'
# execute_on = 'INITIAL TIMESTEP_BEGIN TIMESTEP_END'
conditional_function = 'if(t>2.333 & t<=2.417,1,0)'
execute_on = 'INITIAL TIMESTEP_BEGIN NONLINEAR'
[]
[controls0011]
type = ConditionalFunctionEnableControl
enable_objects = ' BCs::bc_drain0011_UG'
# conditional_function = 'if(t>=2.500 & t<2.583,1,0)'
# execute_on = 'INITIAL TIMESTEP_BEGIN TIMESTEP_END'
conditional_function = 'if(t>2.417 & t<=2.500,1,0)'
execute_on = 'INITIAL TIMESTEP_BEGIN NONLINEAR'
[]
[controls0012]
type = ConditionalFunctionEnableControl
enable_objects = ' BCs::bc_drain0012_UG'
# conditional_function = 'if(t>=2.583 & t<2.667,1,0)'
# execute_on = 'INITIAL TIMESTEP_BEGIN TIMESTEP_END'
conditional_function = 'if(t>2.500 & t<=2.583,1,0)'
execute_on = 'INITIAL TIMESTEP_BEGIN NONLINEAR'
[]
[controls0013]
type = ConditionalFunctionEnableControl
enable_objects = ' BCs::bc_drain0013_UG'
# conditional_function = 'if(t>=2.667 & t<2.750,1,0)'
# execute_on = 'INITIAL TIMESTEP_BEGIN TIMESTEP_END'
conditional_function = 'if(t>2.583 & t<=2.667,1,0)'
execute_on = 'INITIAL TIMESTEP_BEGIN NONLINEAR'
[]
[controls0014]
type = ConditionalFunctionEnableControl
enable_objects = ' BCs::bc_drain0014_UG'
# conditional_function = 'if(t>=2.750 & t<2.833,1,0)'
# execute_on = 'INITIAL TIMESTEP_BEGIN TIMESTEP_END'
conditional_function = 'if(t>2.667 & t<=2.750,1,0)'
execute_on = 'INITIAL TIMESTEP_BEGIN NONLINEAR'
[]
[controls0015]
type = ConditionalFunctionEnableControl
enable_objects = ' BCs::bc_drain0015_UG'
# conditional_function = 'if(t>=2.833 & t<2.917,1,0)'
# execute_on = 'INITIAL TIMESTEP_BEGIN TIMESTEP_END'
conditional_function = 'if(t>2.750 & t<=2.833,1,0)'
execute_on = 'INITIAL TIMESTEP_BEGIN NONLINEAR'
[]
[controls0016]
type = ConditionalFunctionEnableControl
enable_objects = ' BCs::bc_drain0016_UG'
# conditional_function = 'if(t>=2.917 & t<3.000,1,0)'
# execute_on = 'INITIAL TIMESTEP_BEGIN TIMESTEP_END'
conditional_function = 'if(t>2.833 & t<=2.917,1,0)'
execute_on = 'INITIAL TIMESTEP_BEGIN NONLINEAR'
[]
[controls0017]
type = ConditionalFunctionEnableControl
enable_objects = ' BCs::bc_drain0017_UG'
# conditional_function = 'if(t>=3.000 & t<3.083,1,0)'
# execute_on = 'INITIAL TIMESTEP_BEGIN TIMESTEP_END'
conditional_function = 'if(t>2.917 & t<=3.000,1,0)'
execute_on = 'INITIAL TIMESTEP_BEGIN NONLINEAR'
[]
[controls0018]
type = ConditionalFunctionEnableControl
enable_objects = ' BCs::bc_drain0018_UG'
# conditional_function = 'if(t>=3.083 & t<3.167,1,0)'
# execute_on = 'INITIAL TIMESTEP_BEGIN TIMESTEP_END'
conditional_function = 'if(t>3.000 & t<=3.083,1,0)'
execute_on = 'INITIAL TIMESTEP_BEGIN NONLINEAR'
[]
[controls0019]
type = ConditionalFunctionEnableControl
enable_objects = ' BCs::bc_drain0019_UG'
# conditional_function = 'if(t>=3.167 & t<3.250,1,0)'
# execute_on = 'INITIAL TIMESTEP_BEGIN TIMESTEP_END'
conditional_function = 'if(t>3.083 & t<=3.167,1,0)'
execute_on = 'INITIAL TIMESTEP_BEGIN NONLINEAR'
[]
[controls0020]
type = ConditionalFunctionEnableControl
enable_objects = ' BCs::bc_drain0020_UG'
# conditional_function = 'if(t>=3.250 & t<3.333,1,0)'
# execute_on = 'INITIAL TIMESTEP_BEGIN TIMESTEP_END'
conditional_function = 'if(t>3.167 & t<=3.250,1,0)'
execute_on = 'INITIAL TIMESTEP_BEGIN NONLINEAR'
[]
[controls0021]
type = ConditionalFunctionEnableControl
enable_objects = ' BCs::bc_drain0021_UG'
# conditional_function = 'if(t>=3.333 & t<3.417,1,0)'
# execute_on = 'INITIAL TIMESTEP_BEGIN TIMESTEP_END'
conditional_function = 'if(t>3.250 & t<=3.333,1,0)'
execute_on = 'INITIAL TIMESTEP_BEGIN NONLINEAR'
[]
[controls0022]
type = ConditionalFunctionEnableControl
enable_objects = ' BCs::bc_drain0022_UG'
# conditional_function = 'if(t>=3.417 & t<3.500,1,0)'
# execute_on = 'INITIAL TIMESTEP_BEGIN TIMESTEP_END'
conditional_function = 'if(t>3.333 & t<=3.417,1,0)'
execute_on = 'INITIAL TIMESTEP_BEGIN NONLINEAR'
[]
[controls0023]
type = ConditionalFunctionEnableControl
enable_objects = ' BCs::bc_drain0023_UG'
# conditional_function = 'if(t>=3.500 & t<3.583,1,0)'
# execute_on = 'INITIAL TIMESTEP_BEGIN TIMESTEP_END'
conditional_function = 'if(t>3.417 & t<=3.500,1,0)'
execute_on = 'INITIAL TIMESTEP_BEGIN NONLINEAR'
[]
[controls0024]
type = ConditionalFunctionEnableControl
enable_objects = ' BCs::bc_drain0024_UG'
# conditional_function = 'if(t>=3.583 & t<3.667,1,0)'
# execute_on = 'INITIAL TIMESTEP_BEGIN TIMESTEP_END'
conditional_function = 'if(t>3.500 & t<=3.583,1,0)'
execute_on = 'INITIAL TIMESTEP_BEGIN NONLINEAR'
[]
[controls0025]
type = ConditionalFunctionEnableControl
enable_objects = ' BCs::bc_drain0025_UG'
# conditional_function = 'if(t>=3.667 & t<3.750,1,0)'
# execute_on = 'INITIAL TIMESTEP_BEGIN TIMESTEP_END'
conditional_function = 'if(t>3.583 & t<=3.667,1,0)'
execute_on = 'INITIAL TIMESTEP_BEGIN NONLINEAR'
[]
[controls0026]
type = ConditionalFunctionEnableControl
enable_objects = ' BCs::bc_drain0026_UG'
# conditional_function = 'if(t>=3.750 & t<3.833,1,0)'
# execute_on = 'INITIAL TIMESTEP_BEGIN TIMESTEP_END'
conditional_function = 'if(t>3.667 & t<=3.750,1,0)'
execute_on = 'INITIAL TIMESTEP_BEGIN NONLINEAR'
[]
[controls0027]
type = ConditionalFunctionEnableControl
enable_objects = ' BCs::bc_drain0027_UG'
# conditional_function = 'if(t>=3.833 & t<3.917,1,0)'
# execute_on = 'INITIAL TIMESTEP_BEGIN TIMESTEP_END'
conditional_function = 'if(t>3.750 & t<=3.833,1,0)'
execute_on = 'INITIAL TIMESTEP_BEGIN NONLINEAR'
[]
[controls0028]
type = ConditionalFunctionEnableControl
enable_objects = ' BCs::bc_drain0028_UG'
# conditional_function = 'if(t>=3.917 & t<4.000,1,0)'
# execute_on = 'INITIAL TIMESTEP_BEGIN TIMESTEP_END'
conditional_function = 'if(t>3.833 & t<=3.917,1,0)'
execute_on = 'INITIAL TIMESTEP_BEGIN NONLINEAR'
[]
[controls0029]
type = ConditionalFunctionEnableControl
enable_objects = ' BCs::bc_drain0029_UG'
# conditional_function = 'if(t>=4.000 & t<4.083,1,0)'
# execute_on = 'INITIAL TIMESTEP_BEGIN TIMESTEP_END'
conditional_function = 'if(t>3.917 & t<=4.000,1,0)'
execute_on = 'INITIAL TIMESTEP_BEGIN NONLINEAR'
[]
[controls0030]
type = ConditionalFunctionEnableControl
enable_objects = ' BCs::bc_drain0030_UG'
# conditional_function = 'if(t>=4.083 & t<4.167,1,0)'
# execute_on = 'INITIAL TIMESTEP_BEGIN TIMESTEP_END'
conditional_function = 'if(t>4.000 & t<=4.083,1,0)'
execute_on = 'INITIAL TIMESTEP_BEGIN NONLINEAR'
[]
[controls0031]
type = ConditionalFunctionEnableControl
enable_objects = ' BCs::bc_drain0031_UG'
# conditional_function = 'if(t>=4.167 & t<4.250,1,0)'
# execute_on = 'INITIAL TIMESTEP_BEGIN TIMESTEP_END'
conditional_function = 'if(t>4.083 & t<=4.167,1,0)'
execute_on = 'INITIAL TIMESTEP_BEGIN NONLINEAR'
[]
[controls0032]
type = ConditionalFunctionEnableControl
enable_objects = ' BCs::bc_drain0032_UG'
# conditional_function = 'if(t>=4.250 & t<4.333,1,0)'
# execute_on = 'INITIAL TIMESTEP_BEGIN TIMESTEP_END'