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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

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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
    • Model save, split, merge, compare, report, export
  • PlantDrafter
    • Plot plans, Detached plans

Integrated, Friendly, Intuitive

conceptual modeling
Conceptual Modeling
  • Equipment
  • Nozzles
  • Pipeways
  • Structures
  • Obstacles
equipment modeling
From simple

To extravagant

Equipment Modeling

Defined with only a few input parameters

nozzles and autonozzle
Nozzles and AutoNozzle

Placed by rules

pipeways
From simple

To complex

Pipeways

Defined with only a few input parameters

structures
Structures

Stairways

Structures (with Floors)

Pedestals (without Floors)

Defined with only a few input parameters

structure pipeways
Structure Pipeways

Floor

Penetrations

Standing

In-structure Pipeways

Vertical Chases

Hanging

In-structure Pipeways

Vertical Pipeways

All defined with only a few input parameters

autorouter
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
router performance
Router Performance
  • 1-5 seconds per pipe
vicinity routing
Vicinity Routing

Rule-based equipment specific patterns

free space routing
Free Space Routing

Routing in priority order for lowest cost

routing through point clouds
Routing through Point Clouds
  • A collaborative project with Bitwyse
automatic component placement
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)
all driven from process data
All Driven from Process Data

User-Defined Inlines

Branch

slide24
Tees

With rule-based selection of tee type

reducers
Reducers

Placed to minimize piping cost

spec driven
Spec Driven
  • Simple Spreadsheet Table Interface
autorouter manipulation
AutoRouter Manipulation

Router Menu

  • Pipeline Freezing
    • Partial
    • Complete
  • Placeable components
  • Slideable Components

RouteManual RouteUnRouteModifySlideSupports

frozen line
Frozen Line

or

Before

Completely frozen

Partially frozen

partial freeze
Partial Freeze
  • Freeze a single segment
  • Freeze a selected range of points
  • Freeze non-sequential segments
placeable components
Placeable Components
  • Drag, place, and/or rotate and the pipeline follows
user rules
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, …
geometry rule example i
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

geometry rule example ii
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

nozzle rules example
Nozzle Rules – Example

(For STORAGE_TANK nozzles

WHEN nozzle.type is manway

LOCATE nozzle with

element = tank

face = body

distance = inches-or-mm(30.0 750.0)

angle = away-from-pipeway

...)

vicinity routing rules example
Vicinity Routing Rules - Example

(From PACKAGED_EQUIPMENT

GO nozzle-direction (10 * pipeline.diameter)

AND GO up (inches-or-mm(60.0 1500.0))

)

router settings
Router Settings
  • Many “rules” are settings in PlantWise
    • Routing Plane Offset
    • Minimum Line Spacing
    • Allow Tees at Corners?
    • Pipeway Spacing Round-off
model and data management
Model and Data Management
  • Report Writer and Highlighting
  • Interfaces
  • Multi-model support
    • Compare
    • Fenced Export
    • Integration
  • Proximity Checking
reportwriter
ReportWriter

A Sample Cost Report using Sample DataLine 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

highlight set
Highlight Set
  • Pipeline.diameter >= 6.0
interfaces
Interfaces
  • Pipe Route Export
  • .dgn/.drv compatible viewers
  • FrameWorks Plus(via PML)
  • PDS (via APL)
  • XMPlant
p lant w ise
PlantWise
  • A conceptual plant design tool with 3D Modeling and AutoRouting for rapid layout optimization
  • Features
    • Easy 3D Modeling
    • Fast Quality Routingwith Inline Placement
    • Model and Data Management
    • Push-button Reports and Drawings

Integrated, Friendly, Intuitive… Effective

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