abaqus中各能量缩写

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allie allke等

Total energy output quantities

If the following whole model variables are relevant for a particular analysis, you can request them as output to the data, results, or output database file (see “Total energy output” in “Output to the data and results files,” Section 4.1.2, and “Total energy output” in “Output to the output database,” Section 4.1.3). If you do not specify an output region, whole model variables are calculated. When you specify an output region, the relevant energy totals are calculated over the user-specified region.

These variables are not available for eigenvalue buckling prediction, eigenfrequency extraction, or complex frequency extraction analysis. You cannot specify an output region for modal dynamic, random response, response spectrum, or steady-state dynamic analysis.

See “Energy balance,” Section 1.5.5 of the Abaqus Theory Manual, for details of the energy definitions.

ALLAE

“Artificial” strain energy associated with constraints used to remove singular modes (such as hourglass control), and with constraints used to make the drill rotation follow the in-plane rotation of the shell elements. .dat: automatic .fil: automatic .odb Field: no .odb History: yes

ALLCD

Energy dissipated by creep, swelling, and viscoelasticity.

.dat: automatic .fil: automatic .odb Field: no .odb History: yes

ALLEE

Electrostatic energy.

.dat: automatic .fil: automatic .odb Field: no .odb History: yes

ALLFD

Total energy dissipated through frictional effects. (Available only for the whole model.)

.dat: automatic .fil: automatic .odb Field: no .odb History: yes

ALLIE

allie allke等

Total strain energy. (ALLIE = ALLSE + ALLPD + ALLCD + ALLAE + ALLQB + ALLEE + ALLDMD.)

.dat: automatic .fil: automatic .odb Field: no .odb History: yes

ALLJD

Electrical energy dissipated due to flow of electrical current.

.dat: automatic .fil: automatic .odb Field: no .odb History: yes

ALLKE

Kinetic energy.

.dat: automatic .fil: automatic .odb Field: no .odb History: yes

ALLKL

Loss of kinetic energy at impact. (Available only for the whole model.) .dat: automatic .fil: automatic .odb Field: no .odb History: yes

ALLPD

Energy dissipated by rate-independent and rate-dependent plastic deformation.

.dat: automatic .fil: automatic .odb Field: no .odb History: yes

ALLQB

Energy dissipated through quiet boundaries (infinite elements). (Available only for the whole model.)

.dat: automatic .fil: automatic .odb Field: no .odb History: yes

ALLSD

Energy dissipated by automatic stabilization. This includes both

volumetric static stabilization and automatic approach of contact pairs (the latter part included only for the whole model).

.dat: automatic .fil: automatic .odb Field: no .odb History: yes

ALLSE

Recoverable strain energy.

.dat: automatic .fil: automatic .odb Field: no .odb History: yes

allie allke等

ALLVD

Energy dissipated by viscous effects, not inclusive of energy dissipated by automatic stabilization and viscoelasticity.

.dat: automatic .fil: automatic .odb Field: no .odb History: yes

ALLDMD

Energy dissipated by damage.

.dat: automatic .fil: automatic .odb Field: no .odb History: yes

ALLWK

External work. (Available only for the whole model.)

.dat: automatic .fil: automatic .odb Field: no .odb History: yes

ETOTAL

Total energy balance (available only for the whole model).

(ETOTAL = ALLKE + ALLIE + ALLVD + ALLSD + ALLKL + ALLFD + ALLJD – ALLWK.) .dat: automatic .fil: automatic .odb Field: no .odb History: yes

Solution-dependent amplitude variables

Solution-dependent amplitude variables are given automatically with any file output or output database request.

LPF

Load proportionality factor in a static Riks analysis.

.dat: no .fil: automatic .odb Field: no .odb History: automatic

AMPCU

Current value of the solution-dependent amplitude.

.dat: no .fil: automatic .odb Field: no .odb History: automatic

RATIO

allie allke等

Current maximum ratio of creep strain rate and target creep strain rate. .dat: no .fil: automatic .odb Field: no .odb History: automatic

Attributes: 1 – Total kinetic energy (ALLKE).

2 – Total recoverable (elastic) strain energy (ALLSE). 3 – Total external work (ALLWK, available only for the

whole model.)

4 – Total plastic dissipation (ALLPD).

5 – Total creep dissipation (ALLCD).

6 – Total viscous dissipation, not including

dissipation due to stabilization (ALLVD).

7 – Total loss of kinetic energy at impacts (ALLKL,

available only for the whole model).

8 – Total artificial strain energy (ALLAE).

9 – Total energy dissipated through quiet boundaries

(ALLQB, available only for the whole model).

10 – Total electrostatic energy (ALLEE).

11 – Total strain energy (ALLIE).

12 – Total energy balance (ETOTAL, available only for

the whole model).

13 – Total energy dissipated through frictional effects

(ALLFD, available only for the whole model).

14 – Total electrical energy dissipated in

conductors (ALLJD).

15 – Total static dissipation (due to stabilization,

ALLSD).

16 – Total damage dissipation (ALLDMD).

17 – Currently not used.

18 – Currently not used.

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