Bentley OpenPlant Modeler Training Online Certification Course

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15,625 Learners

Explore intelligent 3D plant design and engineering workflows with Bentley OpenPlant Modeler Training by Multisoft Systems. The course covers project configuration, equipment modeling, piping design, component placement, specifications, engineering data, model coordination, drawing extraction, and plant documentation. Instructor-led sessions and practical exercises help participants work effectively with multidiscipline plant models and engineering information.

Instructor-Led Training Parameters

Course Highlights

  • Instructor-led Online Training
  • Project Based Learning
  • Certified & Experienced Trainers
  • Course Completion Certificate
  • Customized Learning Schedule
  • Doubt-Clearing Sessions

Bentley OpenPlant Modeler Training Online Certification Course Course Overview

Bentley OpenPlant Modeler Training by Multisoft Systems provides structured learning in intelligent 3D plant design and engineering using OpenPlant Modeler. The course introduces participants to the application environment, plant modeling concepts, project configuration, engineering standards, and data-driven modeling workflows used across process and industrial facilities.

Participants work with essential plant design activities such as equipment creation and placement, piping routing, fittings and components, specifications, connectivity, engineering properties, and supporting plant elements. The training also addresses model organization, visualization, drawing production, engineering information, and coordination between different design disciplines.

Practical exercises are incorporated throughout the program to connect software functionality with realistic engineering requirements. By the end of the training, participants will be familiar with an end-to-end OpenPlant Modeler workflow and will be able to create, modify, review, coordinate, and document intelligent plant models for engineering projects.

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Bentley OpenPlant Modeler Training Online Certification Course Course curriculum

Curriculum Designed by Experts

Bentley OpenPlant Modeler Training by Multisoft Systems provides structured learning in intelligent 3D plant design and engineering using OpenPlant Modeler. The course introduces participants to the application environment, plant modeling concepts, project configuration, engineering standards, and data-driven modeling workflows used across process and industrial facilities.

Participants work with essential plant design activities such as equipment creation and placement, piping routing, fittings and components, specifications, connectivity, engineering properties, and supporting plant elements. The training also addresses model organization, visualization, drawing production, engineering information, and coordination between different design disciplines.

Practical exercises are incorporated throughout the program to connect software functionality with realistic engineering requirements. By the end of the training, participants will be familiar with an end-to-end OpenPlant Modeler workflow and will be able to create, modify, review, coordinate, and document intelligent plant models for engineering projects.

  • Understand the OpenPlant Modeler environment and intelligent plant design concepts.
  • Navigate and manage multidiscipline 3D plant models.
  • Configure and work within plant modeling project environments.
  • Create and position common process equipment.
  • Define equipment nozzles and engineering properties.
  • Create pipelines and perform intelligent 3D pipe routing.
  • Place valves, fittings, flanges, reducers, and other piping components.
  • Work with piping specifications and component information.
  • Maintain connectivity between equipment and piping systems.
  • Review and modify engineering properties associated with model objects.
  • Coordinate plant models with structural and other discipline information.
  • Prepare model views and engineering documentation.
  • Review models for consistency, routing, accessibility, and coordination.
  • Apply OpenPlant Modeler workflows to practical plant engineering scenarios.

Course Prerequisite

  • Basic knowledge of plant engineering or industrial design concepts.
  • Familiarity with piping, equipment, or mechanical design terminology.
  • Basic understanding of engineering drawings.
  • Familiarity with CAD or 3D modeling environments is beneficial.
  • Knowledge of piping components and plant layouts can be helpful.
  • Previous exposure to Bentley design applications is advantageous but not mandatory.

Course Target Audience

  • Piping Designers
  • Plant Designers
  • Piping Engineers
  • Mechanical Engineers
  • Process Plant Design Professionals
  • CAD Designers and Drafting Professionals
  • Plant Engineering Professionals
  • 3D Modelers
  • Engineering Consultants
  • EPC professionals involved in plant design projects
  • Professionals transitioning to intelligent 3D plant modeling
  • Engineering graduates seeking exposure to plant design applications

Course Content

  • Overview of OpenPlant Modeler
  • Role of OpenPlant Modeler in plant engineering
  • Understanding intelligent 3D plant modeling
  • OpenPlant applications and engineering ecosystem
  • Typical plant design lifecycle
  • Understanding multidiscipline plant projects
  • Model-based engineering concepts
  • Overview of project deliverables
  • Introduction to engineering data and component intelligence

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  • Understanding the OpenPlant Modeler interface
  • Ribbon, menus, dialogs, and tool organization
  • Working with views and view controls
  • Navigating 3D plant models
  • Understanding project and workset environments
  • Opening and managing design files
  • Project units and coordinate considerations
  • Working with reference models
  • Model organization and file management
  • Basic display and visualization settings
  • Setting up the modeling workspace

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  • Understanding plant model hierarchy
  • Plant areas, units, systems, and services
  • Engineering component classes
  • Component properties and attributes
  • Understanding connectivity in intelligent models
  • Working with plant design standards
  • Model naming and tagging concepts
  • Understanding specifications
  • Working with engineering coordinates
  • Placement and modification fundamentals
  • Selection and manipulation of plant objects
  • Maintaining model consistency

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  • Equipment modeling concepts
  • Placing standard equipment
  • Working with equipment classes
  • Creating equipment using available primitives
  • Defining equipment dimensions
  • Equipment orientation and positioning
  • Working with equipment properties
  • Equipment tags and identification
  • Creating and positioning equipment nozzles
  • Nozzle orientation and connectivity
  • Modifying existing equipment
  • Copying and reusing equipment
  • Working with common plant equipment such as:
  1. Tanks
  2. Vessels
  3. Pumps
  4. Exchangers
  5. Columns
  • Equipment modeling exercises

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  • Introduction to intelligent piping design
  • Understanding pipelines and line information
  • Creating a new pipeline
  • Defining piping service and specification
  • Pipe routing concepts
  • Routing pipes in 3D space
  • Routing using coordinates and directions
  • Horizontal and vertical routing
  • Connecting piping to equipment nozzles
  • Continuing existing pipelines
  • Changing routing direction
  • Working with pipe sizes
  • Modifying existing pipe routes
  • Moving and adjusting piping components
  • Understanding piping connectivity
  • Managing connected components
  • Practical piping layout exercises

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  • Placement of piping components
  • Working with elbows
  • Tees and branch connections
  • Reducers and transitions
  • Flanges
  • Gaskets
  • Valves
  • Couplings and specialty components
  • Component orientation and alignment
  • Inline component placement
  • Branch creation techniques
  • Connecting components to existing piping
  • Component replacement
  • Changing component properties
  • Understanding connection relationships
  • Checking piping continuity
  • Practical component placement scenarios

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  • Understanding OpenPlant specifications
  • Relationship between catalogs and specifications
  • Specification-driven component selection
  • Working with piping specifications
  • Selecting components according to specification
  • Understanding component classes
  • Engineering properties associated with components
  • Size and rating considerations
  • Material and specification information
  • Reviewing component data
  • Modifying editable component properties
  • Understanding project-specific component requirements
  • Importance of data consistency
  • Using specifications within plant modeling workflows

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  • Understanding structural context in plant models
  • Working with referenced structural models
  • Positioning equipment relative to structures
  • Piping arrangement around structural elements
  • Modeling considerations for platforms and access areas
  • Pipe support concepts
  • Understanding support locations
  • Placement considerations for piping supports
  • Equipment and piping clearance considerations
  • Multidiscipline spatial coordination
  • Identifying physical interferences
  • Organizing plant layout around structural constraints

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  • Understanding data-driven plant models
  • Reviewing component properties
  • Editing engineering information
  • Equipment data management
  • Pipeline and piping component information
  • Tags and identifiers
  • Working with engineering attributes
  • Searching and locating model components
  • Selecting objects based on engineering information
  • Reviewing model relationships
  • Maintaining consistency between geometry and data
  • Understanding engineering information throughout the model lifecycle
  • Model data validation considerations

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  • Introduction to plant documentation workflows
  • Preparing models for drawing generation
  • Creating useful model views
  • Working with plan and elevation views
  • Section and detail considerations
  • Understanding drawing composition
  • Annotation concepts
  • Component identification in documentation
  • Dimensions and engineering information
  • Drawing presentation considerations
  • Updating documentation following model changes
  • Reviewing drawing output
  • Preparing engineering models for downstream deliverables

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  • Multidiscipline plant design coordination
  • Working with reference files
  • Combining equipment, piping, and structural information
  • Model visualization techniques
  • Reviewing plant layouts
  • Identifying design conflicts
  • Checking equipment accessibility
  • Reviewing piping routes
  • Understanding clearance requirements
  • Coordinating model changes
  • Engineering data exchange concepts
  • Interoperability within Bentley plant engineering workflows
  • Model review and quality considerations
  • Preparing coordinated models for project review

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  • Planning an OpenPlant modeling assignment
  • Setting up the plant design environment
  • Organizing equipment and piping information
  • Creating equipment layouts
  • Adding equipment nozzles and connections
  • Creating pipelines
  • Routing process piping
  • Placing valves, fittings, and inline components
  • Applying appropriate specifications
  • Reviewing engineering properties
  • Coordinating piping with surrounding plant elements
  • Checking model connectivity
  • Reviewing model accuracy and consistency
  • Preparing views and engineering documentation
  • Performing model review and corrections
  • End-to-end plant modeling exercise
  • Recommended modeling practices for project environments

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Bentley OpenPlant Modeler Training (MCQ) Assessment

This assessment tests understanding of course content through MCQ and short answers, analytical thinking, problem-solving abilities, and effective communication of ideas. Some Multisoft Assessment Features :

  • User-friendly interface for easy navigation
  • Secure login and authentication measures to protect data
  • Automated scoring and grading to save time
  • Time limits and countdown timers to manage duration.
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Bentley OpenPlant Modeler Corporate Training

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Multisoft Systems is the “one-top learning platform” for everyone. Get trained with certified industry experts and receive a globally-recognized training certificate. Some Multisoft Training Certificate Features :

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Bentley OpenPlant Modeler Training Online Certification Course Trainer Profile

19+ Years Experienced

Our Bentley OpenPlant Modeler Training Corporate & Certification Program trainers bring 13+ years of proven industry expertise, delivering practical insights aligned with real project environments.

Trained 3950+ Professionals

Our expert trainers have successfully trained 3350+ professionals through structured, real-time training programs designed for industry readiness and career growth.

Certified Experts & Real-Time Project Learning

Build strong practical skills through live project-based training sessions led by certified industry experts with real-world experience.

Hands-on Learning Approach

Gain practical exposure through real-time scenarios, industry case studies, and hands-on assignments that simulate actual project challenges.

Certification Training Guidance

Receive expert support to prepare effectively, practice strategically, and confidently achieve globally recognized certification success.

Customized Training Delivery

Flexible training approach tailored to individual learning goals, skill levels, and evolving industry requirements for maximum effectiveness.

Bentley OpenPlant Modeler Training Online Certification Course FAQ's

Bentley OpenPlant Modeler Training focuses on intelligent 3D plant modeling workflows, including equipment, piping, components, engineering data, specifications, model coordination, and documentation.

The training is suitable for piping designers, plant designers, mechanical and piping engineers, CAD professionals, 3D modelers, EPC professionals, and individuals involved in industrial plant engineering.

Yes. Participants learn pipeline creation, 3D routing, equipment connections, branches, valves, fittings, reducers, flanges, and other piping modeling activities.

Yes. The curriculum covers the placement and configuration of plant equipment, equipment properties, positioning, orientation, and nozzle creation.

Yes. Participants are introduced to specification-driven modeling, component selection, engineering properties, size and rating considerations, and the role of catalogs and specifications.

Yes. The course addresses reference models, multidiscipline coordination, layout review, interference considerations, piping routes, equipment accessibility, and model consistency.

Professionals with basic knowledge of engineering drawings, piping, mechanical design, or plant engineering can follow the training. Previous experience with a 3D plant design application can be helpful but is not mandatory.

Yes. Practical exercises are incorporated into equipment modeling, piping routing, component placement, model review, and other key areas, followed by an integrated plant modeling exercise.

Participants gain practical exposure to intelligent plant modeling, equipment placement, piping design, specification-based component selection, engineering information management, model coordination, and plant documentation.

Yes. Multisoft Systems provides a globally recognized training certificate after successful completion of the Bentley OpenPlant Modeler Training course.

To contact Multisoft Systems you can mail us on info@multisoftsystems.com or can call for course enquiry on this number +91 9810306956

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