254 lines
8.0 KiB
Plaintext
254 lines
8.0 KiB
Plaintext
---------------------------------------------------
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-- HOFEM --
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---------------------------------------------------
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---------------------------------------------------
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-- Physic & formulation declaration --
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---------------------------------------------------
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-- HOFEM physics
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physics = "wave_equation"
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-- HOFEM basis functions
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basis_functions = "nedelec"
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-- HOFEM variational unknowns
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variational_unknown = "electric_field"
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-- HOFEM geometrical order approximation
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geometrical_order = 1
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-- HOFEM variational order approximation
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variational_order = 1
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---------------------------------------------------
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-- Geometry & Mesh properties --
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---------------------------------------------------
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-- HOFEM geometry units
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geometry_units = "mm"
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-- Mesh format file
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mesh_format = "ASCII"
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-- Mesh filename
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mesh_filename = "scat3D.em.mesh"
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---------------------------------------------------
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-- Sparse solver properties --
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---------------------------------------------------
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-- Number of post process
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num_post_processes = 2
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-- Number of process
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num_processes = 2
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-- Solver type (in-core/out-of-core)
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solver_type = "in-core"
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-- Number of Solver thread
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solver_threads = 2
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--Increment of memory in memory allocation
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solver_ooc_mb_memory = 800
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--Increment of memory in memory allocation
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solver_percentage_memory = 80
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-- Block size for RHS calculation
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solver_rhs_block_size = 5
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-- Solver type (direct/iterative)
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solver_technique = direct
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-- Solver precision(double/mixed)
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solver_precision = "double"
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-- Solver BLR compression(true/false)
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solver_BLR_compresion = false
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-- Solver BLR compression approximations accuracy
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solver_BLR_approximations = 5.000000000000000E-03
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---------------------------------------------------
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-- Frequency properties --
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---------------------------------------------------
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-- The number of frequency distributions
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Freq_distribution_num = 1
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The type of each frequency distribution(Linear Step,Linear Count,Log Scale,SinglePoint)
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Freq_distribution_type = { 4 }
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-- The frequency distribution information
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Freq_distribution_info = { 3.75000000E+02,3.75000000E+02,1.00000000E+00 }
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-- Save fields for all frequency
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Freq_distribution_savefield = 1
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-- Could exist repeat adaptive frequency
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Freq_probably_adapt_repeat = 0
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---------------------------------------------------
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-- Material properties --
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---------------------------------------------------
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-- Number of materials
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num_materials = 3
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-- Material name
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material_name_1 = Vacuum
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-- Material definition type
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definition_type_1 = "Isotropic"
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-- Marking of dispersive material
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dispersive_mark_1 = "Non-dispersive"
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-- Permittivity of material
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permittivity_1 = 1.000000000000000E+00
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-- Electric loss type of material
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electric_loss_type_1 = "Tan"
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-- Dielectric loss tangent
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dielectric_loss_tangent_1 = 0.000000000000000E+00
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-- Permeability of material
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permeability_1 = 1.000000000000000E+00
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-- Magnetic loss type of material
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magnetic_loss_type_1 = "Tan"
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-- Magnetic loss tangent
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magnetic_loss_tangent_1 = 0.000000000000000E+00
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-- Mass density of material
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mass_density_1 = 0.000000000000000E+00
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-- Heat coefficient of material
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heat_coefficient_1 = 0.000000000000000E+00
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-- Thermal conductivity of material
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thermal_conductivity_1 = 0.000000000000000E+00
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-- Initial temperature of material
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initial_temperature_1 = 2.500000000000000E+01
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-- Material name
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material_name_2 = PEC
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-- Material definition type
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definition_type_2 = "Isotropic"
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-- Marking of dispersive material
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dispersive_mark_2 = "Non-dispersive"
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-- Permittivity of material
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permittivity_2 = 1.000000000000000E+00
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-- Electric loss type of material
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electric_loss_type_2 = "Sigma"
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-- Electric conductivity of material
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electric_conductivity_2 = 1.000000000000000E+30
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-- Permeability of material
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permeability_2 = 1.000000000000000E+00
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-- Magnetic loss type of material
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magnetic_loss_type_2 = "Tan"
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-- Magnetic loss tangent
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magnetic_loss_tangent_2 = 0.000000000000000E+00
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-- Mass density of material
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mass_density_2 = 0.000000000000000E+00
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-- Heat coefficient of material
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heat_coefficient_2 = 0.000000000000000E+00
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-- Thermal conductivity of material
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thermal_conductivity_2 = 0.000000000000000E+00
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-- Initial temperature of material
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initial_temperature_2 = 2.500000000000000E+01
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-- Material name
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material_name_3 = Material1
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-- Material definition type
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definition_type_3 = "Isotropic"
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-- Marking of dispersive material
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dispersive_mark_3 = "Non-dispersive"
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-- Permittivity of material
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permittivity_3 = 1.500000000000000E+00
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-- Electric loss type of material
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electric_loss_type_3 = "Tan"
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-- Dielectric loss tangent
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dielectric_loss_tangent_3 = 0.000000000000000E+00
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-- Permeability of material
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permeability_3 = 1.000000000000000E+00
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-- Magnetic loss type of material
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magnetic_loss_type_3 = "Tan"
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-- Magnetic loss tangent
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magnetic_loss_tangent_3 = 0.000000000000000E+00
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-- Mass density of material
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mass_density_3 = 0.000000000000000E+00
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-- Heat coefficient of material
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heat_coefficient_3 = 0.000000000000000E+00
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-- Thermal conductivity of material
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thermal_conductivity_3 = 0.000000000000000E+00
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-- Initial temperature of material
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initial_temperature_3 = 2.500000000000000E+01
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---------------------------------------------------
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-- Magnetic bias sources --
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---------------------------------------------------
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---------------------------------------------------
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-- UPML Parameter --
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---------------------------------------------------
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--UPML active
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UPML_active = 0
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---------------------------------------------------
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-- iiee method properties --
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---------------------------------------------------
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-- IIEE activation flag
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iiee_truncation_method = false
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-- Set the acceleration of the method
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iiee_truncation_aceleration = "none"
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-- Number of iteration
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iiee_truncation_iterations = 10
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-- maximum error between iterations
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iiee_truncation_error = 1e-4
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-- External domain material (should be vacuum)
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external_domain_material = 1
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---------------------------------------------------
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-- Periodic Boundary conditions --
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---------------------------------------------------
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---------------------------------------------------
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-- Boundary conditions --
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---------------------------------------------------
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-- Total number of boundary conditions
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num_boundary_conditions = 4
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-- Boundary condition marker
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bound_mark_1 = 0
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-- Boundary condition type
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bound_type_1 = "NULL"
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-- Boundary condition marker
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bound_mark_2 = 1
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-- Boundary condition type
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bound_type_2 = "PEC"
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-- Boundary condition marker
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bound_mark_3 = 2
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-- Boundary condition type
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bound_type_3 = "PMC"
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-- Boundary condition marker
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bound_mark_4 = 3
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-- Boundary condition type
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bound_type_4 = "ABC"
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---------------------------------------------------
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-- Electromagnetic excitations --
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---------------------------------------------------
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-- Transfinite element method
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is_TFEM_method = false
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-- Composite excitation activation flag
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composite_excitation = false
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-- number of interior excitations (Ovol,Lvol,VS,CS,Osur,Ofil)
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num_interior_excitations = { 0,0,0,0,0,0 }
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-- number of exterior excitations (Pwaves_single, Pwaves_Multi, HDwace_E, HDwave_H, Lwave, Cwave, GBwave)
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num_exterior_excitations = { 1,0,0,0,0,0,0 }
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-- number of waveports (rectangular, coaxial, general, lumped, Floquet)
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num_waveport_excitations = { 0,0,0,0,0 }
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--Number of equivalent sources (near field, far field)
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num_equivalent_excitations = { 0,0 }
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-- number of terminal ports (general, lumped)
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num_terminal_ports = { 0,0 }
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-- Excitation Serial Marker
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exterior_serial_marker_1 = 1
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-- Exterior boundary condition marker
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exterior_cond_marker_1 = 3
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-- Exterior material marker
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exterior_material_1 = 1
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-- Exterior planewave type
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exterior_type_1 = "Single"
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-- Incidence angle THETA,PHI of planewave
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exterior_angles_1 = { 0.000000000000000E+00,0.000000000000000E+00 }
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-- Polarization angle of planewave
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exterior_polar_angle_1 = 0.000000000000000E+00
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-- Polarization
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exterior_polarType_1 = 0
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-- Magnitude of planewave
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exterior_magnitude_1 = 1.000000000000000E+00
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-- Phase of planewave
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exterior_phase_1 = 0.000000000000000E+00
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