Towards Rotordynamics COMSOL€¦ · rotordynamics Gyroscopic effect Rotordynamical coefficients...

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Towards Rotordynamic Analysis with COMSOL Analysis with COMSOL Multiphysics Martin Karlsson Excerpt from the Proceedings of the 2012 COMSOL Conference in Boston.

Transcript of Towards Rotordynamics COMSOL€¦ · rotordynamics Gyroscopic effect Rotordynamical coefficients...

Towards Rotordynamic Analysis with COMSOL Analysis with COMSOL

Multiphysics

Martin Karlsson

Excerpt from the Proceedings of the 2012 COMSOL Conference in Boston.

Background

� Rotordynamic analysis are carried out with special purpose rotordynamic codes

� Rotating equipment is supported by a structure and is � Rotating equipment is supported by a structure and is physically coupled with it

� In special cases – a combined analysis might be needed

� Simulation driven design

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Objective

� What is needed to perform separate as well as combined rotordynamical and structural analysis of rotating equipment?

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Rotordynamical modelling

� Timoshenko beam elements

� Added mass and inertia due to disks

� Gyroscopic effect� Gyroscopic effect

� Sign of the frequency

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Multiphysical interactions

� Oil film stiffness and damping

� Fluid-rotorinteractions of seals and impellers

� Electromechanical interactions in electrical machines� Electromechanical interactions in electrical machinesand active magnetic bearings

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Typical analysis

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5

6x 10

4 Campbell Diagram [Offset rotor on rigid bearings]

Und

ampe

d na

tura

l fre

quen

cies

[cp

m]

Second bacwards natural mode

Critical speed

Second forwards natural mode

Line of synchronous excitation

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0 1 2 3 4 5 6

x 104

0

1

2

3

4

Rotor speed [rpm]

Und

ampe

d na

tura

l fre

quen

cies

[cp

m]

First backwards natural mode

Critical speed

Critical speed

First forwards natural modeCritical speed

Possible codes for combined analysis

� ABAQUS

� ANSYS

� NASTRAN� NASTRAN

� COMSOL Multiphysics

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COMSOL Multiphysics

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Implementation of rotordynamics

� Gyroscopic effect

� Rotordynamical coefficients

� Rotordynamical analysis by parametric sweep� Rotordynamical analysis by parametric sweep

� Calculations of rotordynamical coefficients

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Gyroscopic effect

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Rotordynamic coefficients

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Excitations

Solvers

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Couple a rotor model to a structural model

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Example of results –foundation – support – rotor mode shape

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Example of results- Campbell plot

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Calculation of rotordynamical coefficients

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Conclusions

� Possible to design an engineering tool in order to carry out coupled rotordynamical and structural analysis

� Possible to identify rotordynamical coefficients using numerical methods

� Further implementation needed for a complete 3D-rotordynamical analysis

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