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SMARTPLANT TRAINING MANUAL SP3D GRID GRID TASK TITLE:
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SP3D GRID TASK
PURPOSE This Training Manual will introduce the user to the various concepts and basics of Grids within Smart Plant 3D. Overview............................................................................................. .......................................... 2 1. The Grid Grid Task..... Task........... ............ ............ ............ ............. .............. ............. ............ ............ ............. .............. .............. .............. ............. ............ ............ ............. ......... .. 2 2. Understanding Understanding Grids....... Grids............. ............ ............. .............. .............. .............. ............. ............ ............ ............. .............. .............. .............. ............. ............ ........ 3 Exercises ...................................................................................................................................... 6 1. Placing a True North North Grid Grid / Coordina Coordinate te System System .............. ..................... .............. .............. ............. ............ ............ ............. ............ ..... 6 2. Placing a Plant Beacon Beacon Grid / Coordin Coordinate ate System System ........... .................. .............. ............. ............ ............ ............. .............. ........... .... 9 3. Placing a Building Building Coordinate Coordinate System............ System................... .............. .............. .............. ............. ............ ............ ............. .............. ............ ..... 11 4. Editing Coordinate Coordinate Systems Systems ............ .................. ............ ............. .............. .............. .............. .............. .............. .............. .............. .............. ............ ..... 15 Move Coordinate System................................................................ ..................................... 16 Add Additional Elevation Plane ............................................................................................ 18 Remove Building Bay (X) ..................................................................................................... 19 5. Placing a Circular Circular Coordinate Coordinate System System ............ ................... ............. ............. ............. ............ ............ ............. .............. ............. ........... ....... .. 20
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Overview 1. THE GRID TASK Select Grid Wizard Place Coordinate System Place Elevation Plane Place Grid Plane Place Radial Grid The Grid task allows us to create logical reference points in space to anchor our structural steel, equipment and various other entities within Smart Plant 3D. To access the Grid Task from within Smart Plant 3D, open the respective Project, and from the Tasks menu, select the “Grids” Task. The action bar will be updated with the above icons. They are: Select
If you you have any objects selected within the the model, or wish to to deselect any objects simply click on this icon and your selection will be reset. Grid Wizard The Grid Wizard guides guides you through the Coordinate or Grid System creation o process, prompting us for various pieces of information in order to accurately reflect our design. Place Coordinate System To simply place a Coordinate System Point. o Place Elevation Plane This allows the user user to add additional elevation planes to an an existing Coordinate Coordinate or o Grid System. Place Grid Plane As before, it allows users users to add add additional Grid Grid Planes Planes to an an existing existing Coordinate or o Grid System. Place Radial Grid Allows users to add additional Radial Grids Grids to an existing Coordinate or Grid o System. o
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2. UNDERSTANDING UNDERSTA NDING GRIDS Grids are the frameworks of structures. st ructures. Grid Wizard (Initial Page) Name: The name, process or area for the specified building. (i.e. ‘3200’) Reference CS: The Building will be referenced to the Plant Beacon, or the True North CS. East (X): The distance the building is from the Plant Beacon. (i.e. ‘2500.00mm’) North (Y): The distance the building is from the Plant Beacon. (i.e. ‘2500.00mm’) Up (Z): The elevation relative to the Plant Beacon. (i.e. ‘0.00mm’)
EL Z
Coordinate / Grid EL-Planes (Z) Reference CS: CS: The Building CS i.e. ‘Building 1’ Start Plane: Plane: i.e. ‘0.00mm’ Copies: Amount Copies: Amount of Elevations. (i.e. ‘ 3’) Spacing: Height of each Bay. (i.e. ‘3000.00mm’)
N Y
E X
Coordinate / Grid N-Planes (Y)
Coordinate / Grid E-Planes (X)
Reference CS: CS: The Building CS i.e. ‘Building 1’ Start Plane: Plane: i.e. ‘0.00mm’ Copies: Amount Copies: Amount of Elevations. (i.e. ‘ 3’) Spacing: Width of each Bay. (i.e. ‘3000.00mm’)
Reference CS: CS: The Building CS i.e. ‘Building 1’ Start Plane: Plane: i.e. ‘0.00mm’ Copies: Amount Copies: Amount of Elevations. (i.e. ‘3’) Spacing: Length of each Bay. (i.e. ‘3000.00mm’)
Figure 1 : Coordinate / Grid System
A Coordinate System is broken up into various various parts. The origin point is the CS (Coordinate System) it defines the origin of the Grid. Inside the System Hierarchy a grid is divided into the following way. Building_1
o
GPX1 GPX2 GPX3 GPX4
-
(Grid (Grid (Grid (Grid
Plane)(X) Plane)(X) Plane)(X) Plane)(X)
El Axis
o
(Coordinate System)
E Axis
o
-
ElevPlane1 ElevPlane2 ElevPlane3 ElevPlane4 -
(Eleva tition Plane)(Z) (Eleva tition Plane)(Z) (Eleva tition Plane)(Z) (Eleva tition Plane)(Z)
GPY1
(Grid Plane)(Y)
E Axis
-
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Grid Wizard (Initial Page) Name: The name, process or area for the specified building. (i.e. ‘3200’) Reference CS: The Building will be referenced to the Plant Beacon, or the True North CS. East (X): The distance the building is from the Plant Beacon. (i.e. ‘2500.00mm’) North (Y): The distance the building is from the Plant Beacon. (i.e. ‘2500.00mm’) Up (Z): The elevation relative to the Plant Beacon. (i.e. ‘0.00mm’)
EL (Z)
Coordinate / Grid EL-Planes (Z) Reference CS: CS: The Building CS i.e. ‘Building 1’ Start Plane: Plane: i.e. ‘0.00mm’ Copies: Amount Copies: Amount of Elevations. (i.e. ‘ 3’) Spacing: Height of each Bay. (i.e. ‘3000.00mm’)
E X N Y
Coordinate / Grid N-Planes (Radial Plane Axis)
Coordinate / Grid E-Planes (Radial Cylinder Axis)
Reference CS: CS: The Building CS i.e. ‘Building 1’ Start Plane: Plane: i.e. ‘0.00mm’ Copies: Amount Copies: Amount of Elevations. (i.e. ‘1’) Spacing: Plane Axis in Degrees. (i.e. ‘90°’)
Reference CS: CS: The Building CS i.e. ‘Building 1’ Start Plane: Plane: i.e. ‘0.00mm’ Copies: Amount Copies: Amount of Elevations. (i.e. ‘ 1’) Spacing: Cylinder Radius. (i.e. ‘3000.00mm’)
Figure 2 : Coordinate / Grid System
A Coordinate System is broken up into various various parts. The origin point is the the CS (Coordinate System) it defines the origin of the Grid. Inside the System Hierarchy a Radial grid is divided into the following way. Building_1
o
-
(Coordinate System)
ElevPlane1 ElevPlane2 ElevPlane3 ElevPlane4 Radial Cylinder Axis C1 C1
(Eleva tition Plane)(Z) (Eleva tition Plane)(Z) (Eleva tition Plane)(Z) (Eleva tition Plane)(Z)
(Radial Grid)
Radial Plane Axis R1 -
(Radial Plane A xis)
El Axis
o
o
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Based on this structure, we understand that to create a Building grid System, we need to place a Coordinate System first and then add the various Grid Planes and Elevation Planes to flesh out our structure. We also need to understand how our building re lates back to our Plant Beacon (Coordinate System) and our Global Coordinate Coo rdinate System. Generally we will find that a large majority of Projects will have a Plant at a slope.
Before After
To simplify the modelling process, we will be creating an additional coordinate system that will rotate our plant so that users can model directly without the need to modify coordinate systems constantly.
Plant Areas / Buildings (Default: Area(X), Area (Y), Area (Z) @ 0°) This is in relation to the Plant Beacon
This provides us with the following: Local Building Coordinates; Plant Based Coordinates; And UTM Based Coordinates.
Plant Beacon True North () (Default: 0,0,0 @ 45°)
Smart Plant 3D (Global) (Default: 0,0,0 @ 0°)
(Default: UTM,UTM,UTM @ 0°) This is in relation to the True North
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Exercises 1. PLACING A TRUE NORTH GRID / COORDINATE COORDINATE SYSTEM SYSTEM
Step 1.
Print Screen or Description Engineering Department Department to supp ly Coordinates for/of the Project
Action
Click
Plant UTM set out p oint including Orientation (See Figure 3:) Open ‘SmartPlant 3D’ icon on desktop
2.
SmartPlant 3D.lnk
or alternatively
SMARTPLANT SMARTPLANT 3D
via ‘Start / All Programs / Intergraph SmartPlant 3D / SmartPlant 3D’
Open a session file and define an appropriate filter for your workspace hiding all existing graphics. 3.
Go to the ‘GRID’ Task environment and ensure the correct Permission Group is set i.e. ‘GRID’.
COMMON:
Select the Grid Wizard command from the Grid toolbar menu. Using Step 1 in the Grid Wizard command, create a new coordinate system based on the [provided UTM (PSOP) and orientation orientation i.e. Name:
TRUE NORTH
Bearing: N 45 deg E (Default: (Defaul t: N 00.0 deg E) 4.
Origin:
Reference CS: Global East (X): 0.00mm North Nor th (Y): 0.00mm Up (Z): 0.00mm
Ensure that your ‘Reference CS’ is set to ‘Global’
GRID WIZARD
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5.
Click ‘Next’
6.
Click ‘Next’
7.
Click ‘Next’
8.
Click ‘Next’
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GRID WIZARD (Elevation Planes)
GRID WIZARD (Grid X-Planes)
GRID WIZARD (Grid Y-Planes)
GRID WIZARD (Radial Cylinde C ylinder) r)
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GRID WIZARD 10.
Click ‘Finish’
(Associated Elevation Planes)
See SmartPlant 3D Screen (View 1) 11.
GRAPHICVIEW:1
You have successfully created a True North orientation point.
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2. PLACING A PLA NT BEACON GRID / COORDINATE SYSTEM
Step
Print Screen or Description
Action
Click
Using the Grid Wizard command, create a new coordinate system based on the provided UTM (PSOP) and orientation i.e. Name:
1
BEACON
Bearing: N 0.00 deg E (Default: N 00.0 deg E) Origin:
GRID WIZARD
Reference CS: change from ‘Global’ to ‘TRUE NORTH’ East (X): 200.00m North (Y): 80.00m Up (Z): 0.00mm
Click ‘Next’
2
Click ‘Next’
3
Click ‘Next’
GRID WIZARD (Elevation Planes)
GRID WIZARD (Grid X-Planes)
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5
Click ‘Next’
6
Click ‘Next’
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GRID WIZARD (Radial Cylinde C ylinder) r)
GRID WIZARD (Radial Planes)
See SmartPlant 3D Screen (View 1) 7
You have successfully created a Plant Beacon orientation point.
GRAPHICVIEW:1
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3. PLACING A BUILDING BUIL DING COORDINATE SYSTEM Goal: We will be taking our Building Coordinate S ystem. This This building will have 3 x3 Bays, and with 3m Elevations.
Coordinates based on Plant Beacon Number o f Bays (X) Number o f Elevations (El)
Before 2500.00mm, 2500.00mm, 0.00mm 3 3
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Action
Click
Using the Grid Wizard command, create a new coordinate system based on the Plant Set Out Point (PSOP) Name:
1.
BUILDING 1
Bearing: N 0.00 deg E (Default: N 00.0 deg E) Origin:
GRID WIZARD
Reference CS: change from ‘Global’ to ‘BEACON’ East (X): 2500.00mm North (Y): 2500.00mm Up (Z): 0.00mm
Click ‘Next’ Create Elevation Planes by p utting amount of copies for example: 3 (As stated 3 storeys high) Create Elevation Spacing for example: 3000.00mm (Distance between p lanes) lanes) 2. Changing Name rule: from ‘Index’ to ‘Position’ Click on ‘Add’
GRID WIZARD (Elevation Planes)
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Create Y-Planes by putting amount of copies for example: 6 (As stated 6 bays) Create Elevation Spacing for example: 1500.00mm (Distance between p lanes) lanes) 4.
Changing Name rule: from ‘Index’ to ‘Alphanumeric and Percent’
GRID WIZARD (Grid Y-Planes)
Change Type: from ‘Un defined’ defined’ to ‘N-S Grid Plane’ Click on ‘Add’ Click ‘Next’
5.
Click ‘Next’
GRID WIZARD (Radial Cylinde C ylinder) r)
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See SmartPlant 3D Screen (View 1) with Rulers 8.
GRAPHICVIEW:1 For instructions on how to d isplay the rulers off, view step 9 -11.
Go to the main menu and select View 9.
>Ruler option to open the ruler d ialog box.
VIEW
Select ‘Rulers…’
10.
Press and hold the key to unselect the rulers.
VIEW
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4. EDITING COORDINATE SYSTEMS Goal: We will be taking our Building Coordinate S ystem, and be moving it from the original location. Once this has been completed, we will be adding an additional elevation, but removing one bay.
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Move Coordinate System Step
Print Screen or Description
Action
1.
From the Tasks Menu, select the Grids Task.
2.
Select the Building 1 Grid from the Workspace Explorer (System Hierarchy).
To ensure that we are working on the
Click
Tasks / Grids
Click
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Input the coordinates for the plant in the Pin Point area. 5. (8500.00mm, 5500.00mm, 0.00mm)
6.
To complete the move, just Left Click once in the center of the screen.
Input Values of Coordinates.
Left Click in Screen.
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REV :
PA
DATE:
09-10-05
NO:
001734-4DXX 001734-4D XX –000 –000X X
Add Ad d Ad di ti on al Elevat Ele vat i on Plan e Step
1.
Print Screen or Description
Action
From the Tasks Menu, select the Grids Task.
Click
Tasks / Grids
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REV :
PA
DATE:
09-10-05
NO:
001734-4DXX 001734-4D XX –000 –000X X
Remove Remove Bu ildi ng Bay (X) (X) Step
1.
Print Screen or Description
Action
From the Tasks Menu, select the Grids Task.
Click
Tasks / Grids
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REV :
5.
PA
DATE:
09-10-05
NO:
001734-4DXX 001734-4D XX –000 –000X X
PLACING A CIRCULAR COORDINATE SYSTEM
Goal: We will be placing a Circular Coordinate System. This allows for the creation of platforms around Silo’s etc.
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Trusted by over 1 million members
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REV :
Step
PA
DATE:
09-10-05
NO:
Print Screen or Description
001734-4DXX 001734-4D XX –000 –000X X
Action
Click
Using the Grid Wizard command, create a new coordinate system based on the Plant Set Out Point (PSOP) Name:
1.
BUILDING 2
Bearing: N 0.00 deg E (Default: N 00.0 deg E) Origin:
Reference CS: change from ‘Global’ to ‘BEACON’ East (X): 50000.00mm North (Y): 50000.00mm Up (Z): 0.00mm
Click ‘Next’
GRID WIZARD
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REV :
PA
DATE:
09-10-05
NO:
001734-4DXX 001734-4D XX –000 –000X X
Create Radial Cylinder Planes by putting amount of copies for example: example: 1 Create Spacing’s: 10000.00mm 5.
Changing Name rule: from ‘Index’ to ‘Position’
GRID WIZARD (Radial Cylinde C ylinder) r)