Course Code: MEC 6565
25 Course Visits
Introduction to Facilities Engineering
Course Sector:
Mechanical Engineering
Course Dates and Locations
Choose a date and location to book your seat
No.
Date
Days
Location
Fees
Enrollment
01
06 - 10 Jul 2025
5 Days
Riyadh, KSA
$4,250
02
05 - 09 Oct 2025
5 Days
Online, Virtual
$2,150
Introduction
Training course introducion / brief

This training program consists to develop the knowledge and skill for the design requirement in each phase of engineering project named conceptual, basic and detailed design or using international terminology: Design Basis), Project proposal, conceptual, basic and detailed designs.

The training program covers the most important aspects of engineering disciplines in the different phases of the design: civil, mechanical, process, electrical; safety, instrumentation and control, communication system, piping and pipeline, and value engineering.

Course Objectives
At the end of the training course, participants will be able to

·       Understand the sequence and phases of project execution.

·       Learn cost impact and benefits at each project phase.

·       Recognize key deliverables in Conceptual, Basic, and Detailed Engineering.

·       Define project scope and resources in the Facilities Design Basis.

·       Assess the role of design contractors and construction agencies.

·       Learn how to estimate costs during the design phase.

·       Understand key elements of process engineering and deliverables.

·       Evaluate risks, environmental impacts, and operational philosophies in Conceptual Engineering.

·       Develop preliminary designs in mechanical, civil, electrical, and instrumentation engineering.

·       Learn how to perform cost estimations and layout evaluations.

·       Understand risk analysis and safety requirements in Conceptual Engineering.

·       Finalize process layout and equipment specifications.

·       Understand the importance of energy requirements and material specifications in Basic Engineering.

·       Learn to consolidate basic engineering and perform risk analysis.

·       Dive into detailed engineering design and deliverables for mechanical, civil, electrical, and instrumentation engineering.

·       Perform detailed cost and risk evaluations.

·       Learn how to assess HSE requirements for final project delivery.

Course Audience
Who is this course for, and can benefit the most

  • Process, Mechanical,
  • Instrumentation and control
  •  Civil and Electrical engineering.   
  • Engineering Project Managers.

Course Outline
The course aims and learning outcomes
  • Introduction
    • Project Initial evaluation
    • Project execution sequence
    • Benefits.
    • Cost impact vs project phase.
    • Standards to be applied.
    • Activities and deliverables in each phase of project development.
    • Conceptual Engineering phase.
    • Basic Engineering phase.
    • Detailed Engineering phase.
    • Estimated costs
  • Facilities Design Basis
    • Definition of the main element of the project scope (what would be built)
    • Definition of the project scope of work
    • Deliverables
    • The plan
    • Resources
  • Facilities Design Basis (cont.)
    • Design contractor information
    • Construction agency to effectively plan and execute the project
    • Cost estimation
  • Conceptual Engineering
    • Process Eng.
      • Input verification.
      • Evaluation of probable process strategies.
      • Typical deliverables (FD, main equipment list, preliminary specification of process elements, preliminary risk considerations, uncertainty estimation of product quality, environmental impact estimation, operational philosophy).
      • Review of real case examples
    • Mechanical Eng.
      • Preliminary layout.
      • Evaluation and preliminary sizing of pipeline, piping and process equipment.
      • Cost estimation.
      • Review of real case examples
  • Conceptual Engineering (cont.)
      • Piping and pipelines
      • Preliminary layout.
      • Evaluation and preliminary sizing of pipeline, piping and process equipment.
      • Cost estimation.
      • Review of real case examples
    • Civil Eng.
      • Evaluation and identification of main construction elements.
      • Preliminary sizing and Cost estimation
      • Real case revie
    • Electrical Eng.
      • Preliminary electrical power requirements.
      • Evaluation of power sources
      • Power distribution strategy
      • Cost estimation
      • Real case review
    • Instrumentation Eng.
      • Identification of instrumentation and control requirements.
      • Evaluation of control strategies.
      • Identification of main instrumentation.
      • Cost estimation
      • Real case revie
    • Review of Conceptual Engineeri
      • PFD and UFD development and approva
      • Sizing of process equipmen
      • Risk analysi
      • Safety requirements
      • Environmental impact evaluation
      • Review of operational philosophy.
      • Global test definition
  • Basic Engineering (and FEED)
    • Mechanical Eng.
      • Final process layout.
      • Piping and equipment layouts.
      • Specifications of mechanical equipment
      • Maintenance guidelines.
      • Energy requirements.
      • Pipeline preliminary design.
      • Material specifications.
      • Material estimation.
      • Definition of tests for mechanical equipment
      • Cost estimation
    • Civil Eng.
      • Loads estimation.
      • Preliminary design of buildings, foundations and main structures.
      • Roads.
      • Cost estimation.
      • Electrical power estimated consumptions.
      • Power generation/supply specifications.
      • Energy distribution system specifications.
      • Main electrical equipment specifications.
      • Area classification definition.
      • Cost estimation.
    • Instrumentation Eng.
      • Preliminary P&ID.
      • Control system specifications.
      • General specifications for instrumentation.
      • Specifications of data acquisition system.
      • Control valve preliminary sizing and specifications.
      • Alarm system philosophy.
      • Operation philosophy.
      • Maintenance guidelines
      • Review of Basic Engineering.
      • Basic Engineering consolidation.
      • Risk analysis.
      • Cost estimation.
      • Interaction among specialists
  • Detailed Engineering
    • Mechanical Engineering:
      • Design
      • Deliverable
    • Civill Engineering
      • Design
      • Deliverables
    • Electrical Engineering:
      • Design
      • Deliverables
    • Instrumentation Engineering:
      • Design
      • Deliverables
    • Piping and pipeline:
      • Design
Providers and Associations
Providing the best training services and benefits to our valued clients
Boost certificate of completion
BOOST's Professional Attendance Certificate “BPAC” is always given to the delegates after completing the training course, and depends on their attendance of the program at a rate of no less than 80%, besides their active participation and engagement during the program sessions.
ENDORSED EDUCATION PROVIDER
Over all rating
Excellent
Average
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Flexible deadlines
Customized dates accordance to your schedule
Shareable Certificate
Earn certificate upon completion
COURSE METHODOLOGY

Our Training programs are implemented by combining the participants' academic knowledge and practical practice (30% theoretical / 70% practical activities).

At The end of the training program, Participants are involved in practical workshop to show their skills in applying what they were trained for. A detailed report is submitted to each participant and the training department in the organization on the results of the participant's performance and the return on training. Our programs focus on exercises, case studies, and individual and group presentations.

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