p lant w ise features
DESCRIPTION
P lant W ise Features. Features. PlantBuilder: Rapid & Easy 3D Conceptual Modeling Rule-based equipment modeling and nozzle placement AutoRouter : Fast Quality Routing with Inline Placement Rule-based routing control, routing patterns, & Inline geometry Model and Data Management - PowerPoint PPT PresentationTRANSCRIPT
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PlantWiseFeatures
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Features
• PlantBuilder: Rapid & Easy 3D Conceptual Modeling− Rule-based equipment modeling and nozzle placement
• AutoRouter : Fast Quality Routing with Inline Placement− Rule-based routing control, routing patterns, & Inline geometry
• Model and Data Management− Model save, split, merge, compare, report, export
• PlantDrafter− Plot plans, Detached plans
Integrated, Friendly, Intuitive
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Conceptual Modeling
• Equipment• Nozzles• Pipeways• Structures• Obstacles
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Equipment Modeling
•From simple •To extravagant
Defined with only a few input parameters
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Nozzles and AutoNozzle
Placed by rules
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Pipeways
•From simple •To complex
Defined with only a few input parameters
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Structures
Structures (with Floors)
Stairways
Pedestals (without Floors)
Defined with only a few input parameters
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Structure Pipeways
Vertical Pipeways
Standing In-structure Pipeways
HangingIn-structure Pipeways
Vertical Chases
FloorPenetration
s
All defined with only a few input parameters
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AutoRouter
• Fastest and Best− 1-5 seconds per pipe− Scales up to hundreds or thousands of pipelines
• Features− Vicinity Routing− Free Space Routing− On-Pipeway Routing− Structure Routing− Routing through Point Clouds− Automatic Pipeline Component Placement
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Router Performance
• 1-5 seconds per pipe
0
1
2
3
4
5
6
0 200 400 600 800
Number of Pipes
Ro
uti
ng
Tim
e
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Vicinity Routing
Rule-based equipment specific patterns
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Free Space Routing
Routing in priority order for lowest cost
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On-Pipeway Routing
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Eccentrically Aligned Pipeways
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Pipeway Level Transitions
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Pipeway Obstacle Avoidance and Detection
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Structure Routing: Chases
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Structure Routing: Vertical PWs
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Floor Penetrations
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Routing through Point Clouds
• A collaborative project with Bitwyse
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Putting it All Together
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Automatic Component Placement
• All driven from process data• Basic Components
− Tees− Reducers− Spec Breaks− Control Valves− Flow Elements− User-Defined Inline components
• Spec Driven (minimal data requirements)
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All Driven from Process Data
Branch
User-Defined Inlines
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Tees
With rule-based selection of tee type
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Reducers
Placed to minimize piping cost
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Spec Breaks
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Control Valves
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User-Defined Inlines
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Spec Driven
• Simple Spreadsheet Table Interface
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AutoRouter Manipulation
• Pipeline Freezing− Partial− Complete
• Placeable components• Slideable Components
Route
Manual Route
UnRoute
Modify
Slide
Supports
Router Menu
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Manipulate Segments or Elbows
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Pipeline Point Manipulator
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Frozen Line
Before Completely frozen
Partially frozen
or
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Partial Freeze
•Freeze a single segment•Freeze a selected range of points•Freeze non-sequential segments
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Placeable Components
• Drag, place, and/or rotate and the pipeline follows
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Slideable Components
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User Rules
• Equipment− Geometry
» Physical representation» Obstacle space» Mass properties
− Nozzle Placement− Vicinity Routing
• Inline Components− Geometry− Attributes
• Project Setup Variables − Spacing, routing planes, pipeway levels, reserved spaces, …
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Geometry Rule – Example I(The PACKAGED_EQUIPMENT is composed of element BASEPLATE with geometry = box x-dimension = width y-dimension = length z-dimension = inches-or-mm(6.0 150.0) local-x-origin = width / -2.0 local-y-origin = length / -2.0
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Geometry Rule – Example II element package geometry = box x-dimension = width - inches-or-mm(6.0 150.0) ; less 3 inches inset on both sides y-dimension = length - inches-or-mm(6.0 150.0) z-dimension = height - baseplate.z-dimension local-x-origin = package.x-dimension / -2.0 local-y-origin = package.y-dimension / -2.0 local-z-origin = baseplate.z-dimension
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And on to…
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Nozzle Rules – Example
(For STORAGE_TANK nozzles WHEN nozzle.type is manway LOCATE nozzle with
element = tankface = bodydistance = inches-or-mm(30.0 750.0)angle = away-from-pipeway
...)
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Vicinity Routing Rules - Example
(From PACKAGED_EQUIPMENT
GO nozzle-direction (10 * pipeline.diameter)
AND GO up (inches-or-mm(60.0 1500.0))
)
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User Defined Inline Dialogs
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Router Settings
• Many “rules” are settings in PlantWise− Routing Plane Offset− Minimum Line Spacing− Allow Tees at Corners?− Pipeway Spacing Round-off− …
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Model and Data Management
• Report Writer and Highlighting• Interfaces• Multi-model support
− Compare− Fenced Export− Integration
• Proximity Checking
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ReportWriter
A Sample Cost Report using Sample Data
Line ID Class Comm. Diameter Length (ft.) pipe cost========== ====== ===== ======== ============ ============40-125 NA18 CWS 4.0 99.6 $ 4684.2840-125-1 NA18 CWS 4.0 2.9 $ 135.0040-128 NA18 CWR 6.0 103.8 $ 7323.8040-128-1 NA18 CWR 6.0 2.4 $ 169.2760-100 AF01 PL 4.0 47.8 $ 2156.8370-114 NA18 N2 1.0 52.3 $ 614.89
. . .
80-130 AF01 PV 2.0 89.6 $ 2021.8290-110 NA15 STM 4.0 73.8 $ 3472.1490-111 NA15 CON 2.0 86.1 $ 2024.0790-112 NA15 STM 2.0 80.1 $ 1884.7690-113 NA15 CON 1.0 86.0 $ 1011.62 ============ ============ 1185.0 $ 57738.73
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Fenced Reports
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Highlight Set
» Pipeline.diameter >= 6.0
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Interfaces
• Pipe Route Export• .dgn/.drv compatible viewers• FrameWorks Plus
(via PML)• PDS (via APL)• XMPlant
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Model Compare
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Model Fenced Export
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Model Integration
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Proximity Checking for Layout
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PlantDrafter
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PlantWise• A conceptual plant design tool with 3D Modeling and
AutoRouting for rapid layout optimization• Features
− Easy 3D Modeling− Fast Quality Routing
with Inline Placement− Model and Data
Management− Push-button Reports
and Drawings
Integrated, Friendly, Intuitive… Effective