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Translational Motion

The Translational Motion node provides movement by translation for modeling of heat transfer in solid. It adds the following contribution to the right hand side of Equation 13-1:

Cpu T

The contribution describes the effect of a moving coordinate system that is required to model, for example, a moving heat source.

 

Special care must be taken at boundaries where n·u 0. The Heat Flux

 

boundary condition does not, for example, work at boundaries where

Caution

n·u 0.

D O M A I N S E L E C T I O N

From the Selection list, choose the domains to prescribe a translational motion.

By default, the selection is the same as for the Heat Transfer in Solids node that it is attached to, but it is possible to use more than one Heat Translation subnode, each covering a subset of the Heat Transfer in Solids

Note

node’s selection.

T R A N S L A T I O N A L M O T I O N

Enter component values for x, y, and z (in 3D) for the Velocity field u (SI unit: m/s).

Pressure Work

Right-click the Heat Transfer in Solids or Heat Transfer in Fluids node to add this subnode. The Pressure Work node adds the following term to the right-hand side of Equation 13-1:

T---- S

el

(13-2)

t

 

where Sel is the Elastic Contribution to Entropy. Compared to

u

------ + u u = – pI + + Ft

T H E H E A T T R A N S F E R I N T E R F A C E | 413

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