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Please follow the instructions provided below to add surface and the corresponding load definitions.

1

Navigate to Load Geometry Definitions > Surface > Quadrilateral

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2

Click three-dots icon on Bridge cell and set “BRG1”.

3

Enter Start Station, End Station and Surface Width data as follows for LS1 (Load Surface Definitions).

  • Start Station [ft]: 0

  • End Station [ft]: 520

  • Surface Width [ft]: 36

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4

Navigate to Loads > Surface Load

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5

"Click on the three-dots icon in the surface cell, and set LS1 to identify the construction stages that have a surface load."

6

As per the construction stages in the project, you should define 3 surface loads.

Then enter the name.

7

Click three-dots icon on Stage cell and click select.

Enter the stage data as follows:

  • FutureWearLoad: FutureWearingStage

  • SIPLoadLeft: SIPFormworkStage

  • SIPLoadRight: SIPFormworkStage

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8

Enter the magnitudes of the (Surface) Loads to be applied on Surface as in the figure.

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9

"In this cell, set the Element's stage, which indicates which surface load will be applied to each surface."

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1

Go to Quadrilateral under Load Geometry Definitions on the tree view.

2

Copy Surface, and Graphics from model inputs and paste into OpenBrIM.

3

Go to Surface Load under Loads on the tree view.

4

Copy General from model inputs and paste into OpenBrIM.

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Quadrilateral

Surface

Graphics

Code Block
languagexml
LS1	BRG1	0	520	0	0	36	0	0
Code Block
languagexml
LS1	0	Alignment

Surface Load

General

Code Block
languagexml
FutureWearLoad	LS1	FutureWearingStage	0	0	0.03	0	0	0	Deck
SIPLoadLeft	LS1	SIPFormworkStage	0	0	0.015	0	0	0	Girder Top Left Flange
SIPLoadRight	LS1	SIPFormworkStage	0	0	0.015	0	0	0	Girder Top Right Flange