Solver configuration

ConfigSolver:
SolverType

Type of solver: Type of equation solver. | Constant: Constant value

Type:

Enumerate: { Direct, Iterative }

LargeDeflections

Large deflections: Large deflections are considered.

Type:

bool

ImprovedBending

Improved bending: To avoid shear locking in bending dominated problems when using quadrangular and hexahedral linear elements.

Type:

bool

InitialTimeStep

Init. step fraction: Initial time step as a fraction of the step period. Only used in stress or transient thermal analysis. | Constraints: Conditions: Value must be greater or equal than 0.00 and lower than 1.00.

Type:

Double

MinimumTimeStep

Min. step fraction: Minimum time step as a fraction of the step period. Only used in stress analysis. | Constraints: Conditions: Value must be greater or equal than 0.00 and lower than 1.00.

Type:

Double

MaximumTimeStep

Max. step fraction: Maximum time step as a fraction of the step period. Only used in stress analysis. | Constraints: Conditions: Value must be greater or equal than 0.00 and lower than 1.00.

Type:

Double

MaxIncrements

Max. Increments: Maximum number of increments. | Constraints: Conditions: Value must be greater than 0.

Type:

int

MaxTotalIncrements

Tot. Increments: Maximum number of increments in an analysis. | Constraints: Conditions: Value must be greater than 0.

Type:

int

MinIterations

Min. Iterations: Minimum number of iterations. | Constraints: Conditions: Value must be greater than 0.

Type:

int

MaxIterations

Max. Iterations: Maximum number of iterations. | Constraints: Conditions: Value must be greater than 0.

Type:

int

ConvergenceDisp

Check u convergence: Check for convergence in displacements Y/N.

Type:

bool

ConvergenceF

Check F convergence: Check for convergence in forces Y/N.

Type:

bool

ConvergenceM

Check M convergence: Check for convergence in moments Y/N.

Type:

bool

ToleranceDisp

Tolerance u: Relative tolerance for convergence in displacements. | Constraints: Conditions: Value must be greater than 0.

Type:

Double

ToleranceF

Tolerance F: Relative tolerance for convergence in forces. | Constraints: Conditions: Value must be greater than 0.

Type:

Double

ToleranceM

Tolerance M: Relative tolerance for convergence in moments. | Constraints: Conditions: Value must be greater than 0.

Type:

Double

ContactMethod

Contact method: Select the contact algorithm to use.

Type:

Enumerate: { STS, NTS }

ContactControlSeparationWithinAnIncrement

Control separations within an increment: Select how to proceed if separations occurs during an increment. If separation criteria is fulfilled, separate and reclcyle the iteration or don´t separate in this increment, but separates at the beginning of the next increment.

Type:

Enumerate: { SeparateAndRecycle, NoSeparatePreviousContact, NoSeparateNewContact, NoSeparateAnyContact }

SeparationCriterion

Absolute stress: Absolute stress separation criterion.

Type:

bool

InitialContactDetection

Initial contact detection: Initial contact detection activated.

Type:

bool

SlipThreshold

Slip threshold: Relative sliding displacement below which the contacting surfaces remain sticked. | Constraints: Conditions: Value must be greater or equal than 0.

Type:

Double

FrictionForceTolerance

Friction force tolerance: Tolerance to check convergence of the friction forces. | Constraints: Conditions: Value must be greater than 0.

Type:

Double

CreateModalResults

Create modal results: Results for intermediate modal analysis are kept when a spectral analysis is performed.

Type:

bool

CreateIntermediateNonLinearResults

Create incremental results: Results for intermediate non-linear analysis are kept for all the load increments.

Type:

bool

ApplicationType

Control application: Loads application type in load case.

Type:

Enumerate: { Instantaneous, Ramped }

UsePenaltyMethod

Penalty method: Apply boundary conditions using penalty method.

Type:

bool

ConstructionProcess

Behaviour of construction process: Check the box to allow free motion of deactivated elements. If it is not checked elements will be activated on its original position.

Type:

bool

ArcLength

Arc-Length: Solving method of non-linear models which assumes that the control over the non-linear behaviour and instabilities is based on the mechanical loads. The target is to get the rigtht balance.

Type:

bool

NonPositiveDefMatrix

Non positive definite matrix: Solve a model with a non positive definite coefficent matrix.

Type:

bool

BoundaryConditionDefinition

Boundary condition definition: Select whether fixed displacements are entered as total values or incremental displacements relative to the position at the beginning of the load case.

Type:

Enumerate: { TotalDisplacement, RelativeDisplacement }

ConfigSolver:
SolverType

Type of solver: Type of equation solver. | Constant: Constant value

Type:

Enumerate: { Direct, Iterative }

LargeDeflections

Large deflections: Large deflections are considered.

Type:

bool

ImprovedBending

Improved bending: To avoid shear locking in bending dominated problems when using quadrangular and hexahedral linear elements.

Type:

bool

TransientIntegrationMethod

Integration method: Transient integration method.

Type:

Enumerate: { Newmark, GeneralizedRho, GeneralizedAlpha }

Alphaf

αf: αf coefficient. | Constraints: Conditions: Value must be greater or equal than -0.50 and lower or equal than 0.00.

Type:

Double

Alpham

αm: αm coefficient. | Constraints: Conditions: Value must be greater or equal than -0.50 and lower or equal than 1.00.

Type:

Double

InitialTimeStep

Init. step fraction: Initial time step as a fraction of the step period. Only used in stress or transient thermal analysis. | Constraints: Conditions: Value must be greater or equal than 0.00 and lower than 1.00.

Type:

Double

MinimumTimeStep

Min. step fraction: Minimum time step as a fraction of the step period. Only used in stress analysis. | Constraints: Conditions: Value must be greater or equal than 0.00 and lower than 1.00.

Type:

Double

MaximumTimeStep

Max. step fraction: Maximum time step as a fraction of the step period. Only used in stress analysis. | Constraints: Conditions: Value must be greater or equal than 0.00 and lower than 1.00.

Type:

Double

MaxIncrements

Max. Increments: Maximum number of increments. | Constraints: Conditions: Value must be greater than 0.

Type:

int

MaxTotalIncrements

Tot. Increments: Maximum number of increments in an analysis. | Constraints: Conditions: Value must be greater than 0.

Type:

int

MinIterations

Min. Iterations: Minimum number of iterations. | Constraints: Conditions: Value must be greater than 0.

Type:

int

MaxIterations

Max. Iterations: Maximum number of iterations. | Constraints: Conditions: Value must be greater than 0.

Type:

int

ConvergenceDisp

Check u convergence: Check for convergence in displacements Y/N.

Type:

bool

ConvergenceF

Check F convergence: Check for convergence in forces Y/N.

Type:

bool

ConvergenceM

Check M convergence: Check for convergence in moments Y/N.

Type:

bool

ToleranceDisp

Tolerance u: Relative tolerance for convergence in displacements. | Constraints: Conditions: Value must be greater than 0.

Type:

Double

ToleranceF

Tolerance F: Relative tolerance for convergence in forces. | Constraints: Conditions: Value must be greater than 0.

Type:

Double

ToleranceM

Tolerance M: Relative tolerance for convergence in moments. | Constraints: Conditions: Value must be greater than 0.

Type:

Double

ContactMethod

Contact method: Select the contact algorithm to use.

Type:

Enumerate: { STS, NTS }

ContactControlSeparationWithinAnIncrement

Control separations within an increment: Select how to proceed if separations occurs during an increment. If separation criteria is fulfilled, separate and reclcyle the iteration or don´t separate in this increment, but separates at the beginning of the next increment.

Type:

Enumerate: { SeparateAndRecycle, NoSeparatePreviousContact, NoSeparateNewContact, NoSeparateAnyContact }

SeparationCriterion

Absolute stress: Absolute stress separation criterion.

Type:

bool

InitialContactDetection

Initial contact detection: Initial contact detection activated.

Type:

bool

SlipThreshold

Slip threshold: Relative sliding displacement below which the contacting surfaces remain sticked. | Constraints: Conditions: Value must be greater or equal than 0.

Type:

Double

FrictionForceTolerance

Friction force tolerance: Tolerance to check convergence of the friction forces. | Constraints: Conditions: Value must be greater than 0.

Type:

Double

FilterResultsBy

Store rcf by: Select the method to control the number of result files which will be created.

Type:

Enumerate: { Frequency, Number }

IncrementFrequency

Increment frequency: Number of increments between writing the result file. | Constraints: Conditions: Value must be greater than 0.

Type:

int

ApplicationType

Control application: Loads application type in load case.

Type:

Enumerate: { Instantaneous, Ramped }

UsePenaltyMethod

Penalty method: Apply boundary conditions using penalty method.

Type:

bool

BoundaryConditionDefinition

Boundary condition definition: Select whether fixed displacements are entered as total values or incremental displacements relative to the position at the beginning of the load case.

Type:

Enumerate: { TotalDisplacement, RelativeDisplacement }

ConfigSolver:
SolverType

Type of solver: Type of equation solver. | Constant: Constant value

Type:

Enumerate: { Direct, Iterative }

LargeDeflections

Large deflections: Large deflections are considered.

Type:

bool

ImprovedBending

Improved bending: To avoid shear locking in bending dominated problems when using quadrangular and hexahedral linear elements.

Type:

bool

InitialTimeStep

Init. step fraction: Initial time step as a fraction of the step period. Only used in stress or transient thermal analysis. | Constraints: Conditions: Value must be greater or equal than 0.00 and lower than 1.00.

Type:

Double

MinimumTimeStep

Min. step fraction: Minimum time step as a fraction of the step period. Only used in stress analysis. | Constraints: Conditions: Value must be greater or equal than 0.00 and lower than 1.00.

Type:

Double

MaximumTimeStep

Max. step fraction: Maximum time step as a fraction of the step period. Only used in stress analysis. | Constraints: Conditions: Value must be greater or equal than 0.00 and lower than 1.00.

Type:

Double

MaxIncrements

Max. Increments: Maximum number of increments. | Constraints: Conditions: Value must be greater than 0.

Type:

int

MaxTotalIncrements

Tot. Increments: Maximum number of increments in an analysis. | Constraints: Conditions: Value must be greater than 0.

Type:

int

MinIterations

Min. Iterations: Minimum number of iterations. | Constraints: Conditions: Value must be greater than 0.

Type:

int

MaxIterations

Max. Iterations: Maximum number of iterations. | Constraints: Conditions: Value must be greater than 0.

Type:

int

ConvergenceDisp

Check u convergence: Check for convergence in displacements Y/N.

Type:

bool

ConvergenceF

Check F convergence: Check for convergence in forces Y/N.

Type:

bool

ConvergenceM

Check M convergence: Check for convergence in moments Y/N.

Type:

bool

ToleranceDisp

Tolerance u: Relative tolerance for convergence in displacements. | Constraints: Conditions: Value must be greater than 0.

Type:

Double

ToleranceF

Tolerance F: Relative tolerance for convergence in forces. | Constraints: Conditions: Value must be greater than 0.

Type:

Double

ToleranceM

Tolerance M: Relative tolerance for convergence in moments. | Constraints: Conditions: Value must be greater than 0.

Type:

Double

ContactMethod

Contact method: Select the contact algorithm to use.

Type:

Enumerate: { STS, NTS }

ContactControlSeparationWithinAnIncrement

Control separations within an increment: Select how to proceed if separations occurs during an increment. If separation criteria is fulfilled, separate and reclcyle the iteration or don´t separate in this increment, but separates at the beginning of the next increment.

Type:

Enumerate: { SeparateAndRecycle, NoSeparatePreviousContact, NoSeparateNewContact, NoSeparateAnyContact }

SeparationCriterion

Absolute stress: Absolute stress separation criterion.

Type:

bool

InitialContactDetection

Initial contact detection: Initial contact detection activated.

Type:

bool

SlipThreshold

Slip threshold: Relative sliding displacement below which the contacting surfaces remain sticked. | Constraints: Conditions: Value must be greater or equal than 0.

Type:

Double

FrictionForceTolerance

Friction force tolerance: Tolerance to check convergence of the friction forces. | Constraints: Conditions: Value must be greater than 0.

Type:

Double

ModeExtractionDefinition

Mode extraction: Define how to extract the modes.

Type:

Enumerate: { FreqRange, NumModes }

MinFreq

Minimum frequency: Minimum frequency considered for mode extraction. | Constraints: Conditions: Value must be greater or equal than 0.

Type:

Double

NumberModes

Number of modes: Number of modes that will be extracted.

Type:

int

ApplicationType

Control application: Loads application type in load case.

Type:

Enumerate: { Instantaneous, Ramped }

UsePenaltyMethod

Penalty method: Apply boundary conditions using penalty method.

Type:

bool

NonPositiveDefMatrix

Non positive definite matrix: Solve a model with a non positive definite coefficent matrix.

Type:

bool

BoundaryConditionDefinition

Boundary condition definition: Select whether fixed displacements are entered as total values or incremental displacements relative to the position at the beginning of the load case.

Type:

Enumerate: { TotalDisplacement, RelativeDisplacement }

ConfigSolver:
SolverType

Type of solver: Type of equation solver. | Constant: Constant value

Type:

Enumerate: { Direct, Iterative }

LargeDeflections

Large deflections: Large deflections are considered.

Type:

bool

ImprovedBending

Improved bending: To avoid shear locking in bending dominated problems when using quadrangular and hexahedral linear elements.

Type:

bool

InitialTimeStep

Init. step fraction: Initial time step as a fraction of the step period. Only used in stress or transient thermal analysis. | Constraints: Conditions: Value must be greater or equal than 0.00 and lower than 1.00.

Type:

Double

MinimumTimeStep

Min. step fraction: Minimum time step as a fraction of the step period. Only used in stress analysis. | Constraints: Conditions: Value must be greater or equal than 0.00 and lower than 1.00.

Type:

Double

MaximumTimeStep

Max. step fraction: Maximum time step as a fraction of the step period. Only used in stress analysis. | Constraints: Conditions: Value must be greater or equal than 0.00 and lower than 1.00.

Type:

Double

MaxIncrements

Max. Increments: Maximum number of increments. | Constraints: Conditions: Value must be greater than 0.

Type:

int

MaxTotalIncrements

Tot. Increments: Maximum number of increments in an analysis. | Constraints: Conditions: Value must be greater than 0.

Type:

int

MinIterations

Min. Iterations: Minimum number of iterations. | Constraints: Conditions: Value must be greater than 0.

Type:

int

MaxIterations

Max. Iterations: Maximum number of iterations. | Constraints: Conditions: Value must be greater than 0.

Type:

int

ConvergenceDisp

Check u convergence: Check for convergence in displacements Y/N.

Type:

bool

ConvergenceF

Check F convergence: Check for convergence in forces Y/N.

Type:

bool

ConvergenceM

Check M convergence: Check for convergence in moments Y/N.

Type:

bool

ToleranceDisp

Tolerance u: Relative tolerance for convergence in displacements. | Constraints: Conditions: Value must be greater than 0.

Type:

Double

ToleranceF

Tolerance F: Relative tolerance for convergence in forces. | Constraints: Conditions: Value must be greater than 0.

Type:

Double

ToleranceM

Tolerance M: Relative tolerance for convergence in moments. | Constraints: Conditions: Value must be greater than 0.

Type:

Double

ContactMethod

Contact method: Select the contact algorithm to use.

Type:

Enumerate: { STS, NTS }

ContactControlSeparationWithinAnIncrement

Control separations within an increment: Select how to proceed if separations occurs during an increment. If separation criteria is fulfilled, separate and reclcyle the iteration or don´t separate in this increment, but separates at the beginning of the next increment.

Type:

Enumerate: { SeparateAndRecycle, NoSeparatePreviousContact, NoSeparateNewContact, NoSeparateAnyContact }

SeparationCriterion

Absolute stress: Absolute stress separation criterion.

Type:

bool

InitialContactDetection

Initial contact detection: Initial contact detection activated.

Type:

bool

SlipThreshold

Slip threshold: Relative sliding displacement below which the contacting surfaces remain sticked. | Constraints: Conditions: Value must be greater or equal than 0.

Type:

Double

FrictionForceTolerance

Friction force tolerance: Tolerance to check convergence of the friction forces. | Constraints: Conditions: Value must be greater than 0.

Type:

Double

HarmonicTypeVariation

Type of the increments in frequency. | Constraints: Conditions: The lowest frequency must be bigger than zero for logarithmic increments.

Type:

Enumerate: { LinearFrequenciesVariation, LogarithmicFrequenciesVariation }

MinFrequency

Lowest frequency: The lowest frequency in cycles per time unit. | Constraints: Conditions: Value must be greater or equal than 0. The lowest frequency must be bigger than zero for logarithmic increments.

Type:

Double

MaxFrequency

Highest frequency: The highest frequency in cycles per time unit. | Constraints: Conditions: Value must be greater than 0. The highest frequency must be bigger than highest lowest frequency.

Type:

Double

NumFrequencies

Number of frequencies. | Constraints: Conditions: Value must be greater or equal than 0.

Type:

int

UsePenaltyMethod

Penalty method: Apply boundary conditions using penalty method.

Type:

bool

PenaltyFactor

Penalty factor multiplier: Multiplier used to calculate the penalty factor. | Constraints: Conditions: Value must be greater than 0.

Type:

Double

NonPositiveDefMatrix

Non positive definite matrix: Solve a model with a non positive definite coefficent matrix.

Type:

bool

ApplicationType

Control application: Loads application type in load case.

Type:

Enumerate: { Instantaneous, Ramped }

BoundaryConditionDefinition

Boundary condition definition: Select whether fixed displacements are entered as total values or incremental displacements relative to the position at the beginning of the load case.

Type:

Enumerate: { TotalDisplacement, RelativeDisplacement }

ConfigSolver:
SolverType

Type of solver: Type of equation solver. | Constant: Constant value

Type:

Enumerate: { Direct, Iterative }

LargeDeflections

Large deflections: Large deflections are considered.

Type:

bool

ImprovedBending

Improved bending: To avoid shear locking in bending dominated problems when using quadrangular and hexahedral linear elements.

Type:

bool

InitialTimeStep

Init. step fraction: Initial time step as a fraction of the step period. Only used in stress or transient thermal analysis. | Constraints: Conditions: Value must be greater or equal than 0.00 and lower than 1.00.

Type:

Double

MinimumTimeStep

Min. step fraction: Minimum time step as a fraction of the step period. Only used in stress analysis. | Constraints: Conditions: Value must be greater or equal than 0.00 and lower than 1.00.

Type:

Double

MaximumTimeStep

Max. step fraction: Maximum time step as a fraction of the step period. Only used in stress analysis. | Constraints: Conditions: Value must be greater or equal than 0.00 and lower than 1.00.

Type:

Double

MaxIncrements

Max. Increments: Maximum number of increments. | Constraints: Conditions: Value must be greater than 0.

Type:

int

MaxTotalIncrements

Tot. Increments: Maximum number of increments in an analysis. | Constraints: Conditions: Value must be greater than 0.

Type:

int

MinIterations

Min. Iterations: Minimum number of iterations. | Constraints: Conditions: Value must be greater than 0.

Type:

int

MaxIterations

Max. Iterations: Maximum number of iterations. | Constraints: Conditions: Value must be greater than 0.

Type:

int

ConvergenceDisp

Check u convergence: Check for convergence in displacements Y/N.

Type:

bool

ConvergenceF

Check F convergence: Check for convergence in forces Y/N.

Type:

bool

ConvergenceM

Check M convergence: Check for convergence in moments Y/N.

Type:

bool

ToleranceDisp

Tolerance u: Relative tolerance for convergence in displacements. | Constraints: Conditions: Value must be greater than 0.

Type:

Double

ToleranceF

Tolerance F: Relative tolerance for convergence in forces. | Constraints: Conditions: Value must be greater than 0.

Type:

Double

ToleranceM

Tolerance M: Relative tolerance for convergence in moments. | Constraints: Conditions: Value must be greater than 0.

Type:

Double

ContactMethod

Contact method: Select the contact algorithm to use.

Type:

Enumerate: { STS, NTS }

ContactControlSeparationWithinAnIncrement

Control separations within an increment: Select how to proceed if separations occurs during an increment. If separation criteria is fulfilled, separate and reclcyle the iteration or don´t separate in this increment, but separates at the beginning of the next increment.

Type:

Enumerate: { SeparateAndRecycle, NoSeparatePreviousContact, NoSeparateNewContact, NoSeparateAnyContact }

SeparationCriterion

Absolute stress: Absolute stress separation criterion.

Type:

bool

InitialContactDetection

Initial contact detection: Initial contact detection activated.

Type:

bool

SlipThreshold

Slip threshold: Relative sliding displacement below which the contacting surfaces remain sticked. | Constraints: Conditions: Value must be greater or equal than 0.

Type:

Double

FrictionForceTolerance

Friction force tolerance: Tolerance to check convergence of the friction forces. | Constraints: Conditions: Value must be greater than 0.

Type:

Double

NumberModes

Number of modes: Number of modes that will be extracted.

Type:

int

ApplicationType

Control application: Loads application type in load case.

Type:

Enumerate: { Instantaneous, Ramped }

UsePenaltyMethod

Penalty method: Apply boundary conditions using penalty method.

Type:

bool

NonPositiveDefMatrix

Non positive definite matrix: Solve a model with a non positive definite coefficent matrix.

Type:

bool

BoundaryConditionDefinition

Boundary condition definition: Select whether fixed displacements are entered as total values or incremental displacements relative to the position at the beginning of the load case.

Type:

Enumerate: { TotalDisplacement, RelativeDisplacement }

SolverOutput:
NodeResults

Nodal results: Available nodal results.

Type:

NodalResultsControl

TrussElementResults

Truss element results: Available truss element results.

Type:

TrussElementResultsControl

BeamElementResults

Beam element results: Available beam element results.

Type:

BeamElementResultsControl

ShellElementResults

Shell element results: Available shell element results.

Type:

ShellElementResultsControl

ShellDummyElementResults

Shell dummy element results: Available shell dummy element results.

Type:

ShellDummyElementResultsControl

SolidElementResults

Solid element results: Available solid element results.

Type:

SolidElementResultsControl

ResultsForInitialState

Initial state results: Available results to use t16 for initial state.

Type:

bool

NodalResultsControl:
Results_UT

UT: Displacements.

Type:

bool

Results_UR

UR: Rotations.

Type:

bool

Results_RF

RF: Reaction forces.

Type:

bool

Results_RM

RM: Reaction moments.

Type:

bool

Results_CPRESS

CPRESS: Contact normal stress.

Type:

bool

Results_CSHEAR

CSHEAR: Contact shear stress.

Type:

bool

Results_CNORMF

CNORMF: Contact normal force.

Type:

bool

Results_CSHEARF

CSHEARF: Contact shear force.

Type:

bool

Results_CSTATUS

CSTATUS: Contact status.

Type:

bool

Results_CBREAKIND

CBREAKIND: Contact breaking index.

Type:

bool

Results_VT

VT: Translational velocities.

Type:

bool

Results_AT

AT: Translational acceleration.

Type:

bool

Results_VR

VR: Rotational velocities.

Type:

bool

Results_AR

AR: Rotational accelerations.

Type:

bool

Results_PP

PP: Pore water pressure.

Type:

bool

Results_Tying

Tying: Tying forces and moments.

Type:

bool

AllResults

All: Select/deselect all.

Type:

bool

TrussElementResultsControl:
Results_S

S: Stresses.

Type:

bool

Results_E

E: Total strain.

Type:

bool

Results_EE

EE: Elastic strain.

Type:

bool

Results_PE

PE: Plastic strain.

Type:

bool

Results_TE

TE: Thermal strain and temperatures.

Type:

bool

Results_CreepE

CE: Creep strain.

Type:

bool

Results_PEEQ

PEEQ: Equivalent plastic strain.

Type:

bool

Results_MISES

MISES: Von Mises equivalent stress.

Type:

bool

Results_PRESS

PRESS: Equivalent pressure stress.

Type:

bool

AllResults

All: Select/deselect all.

Type:

bool

BeamElementResultsControl:
Results_S

S: Stresses.

Type:

bool

Results_E

E: Total strain.

Type:

bool

Results_EE

EE: Elastic strain.

Type:

bool

Results_PE

PE: Plastic strain.

Type:

bool

Results_TE

TE: Thermal strain and temperatures.

Type:

bool

Results_CreepE

CE: Creep strain.

Type:

bool

Results_SF

SF: Forces.

Type:

bool

Results_SM

SM: Moments.

Type:

bool

Results_SE

SE: Generalized strains.

Type:

bool

Results_SK

SK: Curvatures.

Type:

bool

Results_PEEQ

PEEQ: Equivalent plastic strain.

Type:

bool

Results_MISES

MISES: Von Mises equivalent stress.

Type:

bool

Results_PRESS

PRESS: Equivalent pressure stress.

Type:

bool

AllResults

All: Select/deselect all.

Type:

bool

ShellElementResultsControl:
Results_S

S: Stresses.

Type:

bool

Results_E

E: Total strain.

Type:

bool

Results_EE

EE: Elastic strain.

Type:

bool

Results_PE

PE: Plastic strain.

Type:

bool

Results_TE

TE: Thermal strain and temperatures.

Type:

bool

Results_CreepE

CE: Creep strain.

Type:

bool

Results_CE

CKE: Cracking strain.

Type:

bool

Results_SF

SF: Forces.

Type:

bool

Results_SM

SM: Moments.

Type:

bool

Results_SE

SE: Generalized strains.

Type:

bool

Results_SK

SK: Curvatures.

Type:

bool

Results_PEEQ

PEEQ: Equivalent plastic strain.

Type:

bool

Results_MISES

MISES: Von Mises equivalent stress.

Type:

bool

Results_PRESS

PRESS: Equivalent pressure stress.

Type:

bool

Results_SP

SP: Principal stresses.

Type:

bool

Results_CKEP

CKEP: Principal cracking strains.

Type:

bool

Results_EP

EP: Total principal strains.

Type:

bool

AllResults

All: Select/deselect all.

Type:

bool

ShellDummyElementResultsControl:
Results_S

S: Stresses.

Type:

bool

AllResults

All: Select/deselect all.

Type:

bool

SolidElementResultsControl:
Results_S

S: Stresses.

Type:

bool

Results_E

E: Total strain.

Type:

bool

Results_EE

EE: Elastic strain.

Type:

bool

Results_PE

PE: Plastic strain.

Type:

bool

Results_TE

TE: Thermal strain and temperatures.

Type:

bool

Results_CreepE

CE: Creep strain.

Type:

bool

Results_CE

CKE: Cracking strain.

Type:

bool

Results_PEEQ

PEEQ: Equivalent plastic strain.

Type:

bool

Results_MISES

MISES: Von Mises equivalent stress.

Type:

bool

Results_PRESS

PRESS: Equivalent pressure stress.

Type:

bool

Results_SP

SP: Principal stresses.

Type:

bool

Results_CKEP

CKEP: Principal cracking strains.

Type:

bool

Results_EP

EP: Total principal strains.

Type:

bool

AllResults

All: Select/deselect all.

Type:

bool

SolverThermalOutput:
NodeResults

Nodal results: Available nodal results.

Type:

NodalResultsControl

TrussElementResults

Truss element results: Available truss element results.

Type:

TrussElementResultsControl

BeamElementResults

Beam element results: Available beam element results.

Type:

BeamElementResultsControl

ShellElementResults

Shell element results: Available shell element results.

Type:

ShellElementResultsControl

ShellDummyElementResults

Shell dummy element results: Available shell dummy element results.

Type:

ShellDummyElementResultsControl

SolidElementResults

Solid element results: Available solid element results.

Type:

SolidElementResultsControl

ResultsForInitialState

Initial state results: Available results to use t16 for initial state.

Type:

bool

SolverSeepageOutput:
NodeResults

Nodal results: Available nodal results.

Type:

NodalResultsControl

TrussElementResults

Truss element results: Available truss element results.

Type:

TrussElementResultsControl

BeamElementResults

Beam element results: Available beam element results.

Type:

BeamElementResultsControl

ShellElementResults

Shell element results: Available shell element results.

Type:

ShellElementResultsControl

ShellDummyElementResults

Shell dummy element results: Available shell dummy element results.

Type:

ShellDummyElementResultsControl

SolidElementResults

Solid element results: Available solid element results.

Type:

SolidElementResultsControl

ResultsForInitialState

Initial state results: Available results to use t16 for initial state.

Type:

bool