KBC

KBC, KEY, OMGSQRDKEY
Specifies ramped or stepped loading within a load step.

Valid Products: Pro | Premium | Enterprise | PrepPost | Solver | AS add-on

KEY

Ramping key:

0

 — 

Loads are linearly interpolated (ramped) for each substep from the values of the previous load step to the values of this load step. This is the default value.

1

 — 

Loads are step changed (stepped) at the first substep of this load step to the values of this load step (that is, the same values are used for all substeps). Useful for rate-dependent behavior (for example, creep, viscoplasticity, etc.) or transient load steps only.

OMGSQRDKEY

Key for the interpolation of the rotational velocity loading (only supported when KEY = 0):

0

 — 

Rotational velocities are linearly interpolated. This is the default.

1

 — 

A quadratic interpolation is used for the rotational velocities (OMEGA, CMOMEGA, and CMROTATE). All other loads are interpolated linearly.

Command Default

The loading is ramped for:

  • static analysis (ANTYPE,STATIC)

  • transient analysis with transient effects excluded (ANTYPE,TRANS and TIMINT,OFF)

  • harmonic analysis (ANTYPE,HARM)

The loading is step-applied for transient analysis with transient effects included (ANTYPE,TRANS and TIMINT,ON; TIMINT,ON is the default for transient analysis).

Notes

Specifies whether loads applied to intermediate substeps within the load step are to be stepped or ramped. Used only if DTIME on the DELTIM command is less than the time span or, conversely, if NSBSTP on the NSUBST command is greater than one. Flags (FSI, MXWF, MVDI, etc.) are always stepped.

Changing the ramping KEY (that is, switching between ramped and stepped boundary conditions) between load steps is not recommended.

For ramped loading (KBC,0), when a load is applied for the first time, it is interpolated from zero to the value of the current load step, and not from the initial condition or value of the degree of freedom from the previous load step.

Spatially varying tabular loads or boundary conditions do not support direct ramping or stepping options and, instead, apply their full values according to the supplied tabular functions regardless of the KBC setting.

Regardless of the KBC setting, any tabular load is applied as step change. This is the case, for example, for a static or harmonic cyclic symmetry analysis with a load that varies by sector (CYCOPT, LDSECT). Note that when tabular and non-tabular loads are present in the same analysis, the non-tabular loads are ramped or stepped according to the KBC setting.

Irrespective of the KBC setting, loads are usually step-removed. See Stepping or Ramping Loads in the Basic Analysis Guide for more information.

It is sometimes difficult to obtain successful convergence with stepped loading in a nonlinear transient problem. If divergence is encountered, determine if stepped loading was used by default, then determine if it is appropriate for the analysis.

This command is also valid in PREP7.

Menu Paths

Main Menu>Preprocessor>Loads>Analysis Type>Sol'n Controls>Transient
Main Menu>Preprocessor>Loads>Load Step Opts>Time/Frequenc>Freq and Substeps
Main Menu>Preprocessor>Loads>Load Step Opts>Time/Frequenc>HOWP and Substeps
Main Menu>Preprocessor>Loads>Load Step Opts>Time/Frequenc>Time - Time Step
Main Menu>Preprocessor>Loads>Load Step Opts>Time/Frequenc>Time and Substeps
Main Menu>Solution>Analysis Type>Sol'n Controls>Transient
Main Menu>Solution>Load Step Opts>Time/Frequenc>Freq and Substeps
Main Menu>Solution>Load Step Opts>Time/Frequenc>HOWP and Substeps
Main Menu>Solution>Load Step Opts>Time/Frequenc>Time - Time Step
Main Menu>Solution>Load Step Opts>Time/Frequenc>Time and Substeps