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Deepwaters Subsea Drilling Engineering Tooling Mechanism & Techniques (DSDETMT) Level 1 & Level 2

$1850.00 $550.00 exc VAT

Course Purpose

The purpose of the Deepwaters Subsea Drilling Engineering Tooling Mechanism & Techniques (DSDETMT) Level 1 & Level 2 course is to provide participants with a comprehensive understanding of subsea drilling engineering, including the tooling mechanisms and techniques used in deepwater environments.

Deepwaters Subsea Drilling Engineering Tooling Mechanism & Techniques (DSDETMT) Level 2 is designed for Offshore Engineers, Subsea Engineers, Offshore Project Engineers, Offshore Installation Manager, Structural Design Engineers & Business Development Managers.

Course Objectives

  • This course aims to equip participants with the necessary knowledge and practical skills to effectively plan, execute, and manage subsea drilling operations in challenging deepwater conditions.
  • Participants will learn about the latest advancements in subsea drilling technology, including tooling mechanisms and techniques specific to deepwater environments, enabling them to overcome operational challenges and enhance drilling efficiency.
  • Through a combination of theoretical instruction, hands-on training, and practical exercises, the DSDETMT course enables participants to gain a solid understanding of the tooling mechanisms and techniques used in subsea drilling, ensuring safe and efficient operations.
  • By completing the DSDETMT Level 1 & Level 2 course, participants will be well-prepared to contribute to the successful execution of subsea drilling projects in deepwater environments, enhancing their career prospects in the offshore oil and gas industry.

Training Mode : Online (Only)

Category:

Description

The Deepwaters Subsea Drilling Engineering Tooling Mechanism & Techniques (DSDETMT) Level 1 & Level 2 course is a comprehensive training program designed to provide participants with a thorough understanding of subsea drilling engineering and the associated tooling mechanisms and techniques.

This course covers a wide range of topics, including subsea drilling operations, tooling selection and utilization, drilling techniques, and safety considerations specific to deepwater environments.

Participants will learn about the latest advancements in subsea drilling technology, industry best practices, and regulatory requirements related to deepwater drilling operations.

Through a combination of theoretical instruction, practical exercises, and case studies, participants will gain hands-on experience in utilizing specialized tooling mechanisms for efficient and safe subsea drilling operations.

By completing the DSDETMT Level 1 & Level 2 course, participants will be equipped with the necessary knowledge and skills to contribute to the successful planning and execution of subsea drilling projects in deepwater environments, enhancing their career prospects in the offshore oil and gas industry.

Deepwaters Subsea Drilling Engineering Tooling Mechanism & Techniques (DSDETMT) Level 1 & Level 2 covers Completions & Workover (C/WO) Risers, Subsea Drilling Riser System Configuration, Components & Architecture, Diverter & Motion Compensating Equipment Choke & Kill Lines & Drilling String, Subsea MUX BOP Control Systems, Direct & Indirect Hydraulic Systems, Multi Electro Hydraulic (MUX) Systems, Acoustic Systems, Manufactures of BOP Control System, Architecture of Subsea BOP Control Systems, Component of Subsea Mux BOP Systems & Operating Sequence, Pilot Fluid Circulations, Subsea Drilling Riser Architecture, Components & Maintenance, Subsea BOP Accummulators Sizing & Calculations, BOP Maintenance & Inspection Job Safety Analysis and more

DSDETMT Level 1 & Level 2 is designed to provide detailed knowledge of Deepwaters Subsea Drilling Engineering Tooling Mechanism & Techniques and will assist those who are switching or enhancing there career in deep and ultra deepwaters subsea engineering.

Course Outlines

Completions & Workover (C/WO) Risers
Subsea Drilling Riser System Configuration, Components & Architecture
Diverter & Motion Compensating Equipment
Choke & Kill Lines & Drilling String

Subsea MUX BOP Control Systems
Direct & Indirect Hydraulic Systems
Multi Electro Hydraulic (MUX) Systems
Acoustic Systems
Manufactures of BOP Control System
Architecture of Subsea BOP Control Systems
Component of Subsea Mux BOP Systems & Operating Sequence
Pilot Fluid Circulations

Subsea Drilling Riser Architecture
Components & Maintenance

Hydraulic Power Systems
Accumulators Components
Sizing & Calculations (Workshop)

General Testing
Testing During Operations
API Regulation on Closing Units Surface
Types of Test

Basic Job Steps
Existing & Potential Hazards
Ways to Eliminate or Control Hazard & Risk Assessment

Technical Support Sectional References

Ref 1: Subsea BOP Control System
Ref 2: Subsea BOP Control System Architecture, Components & Configuration
Ref 3: Offshore Drilling Hydraulic Power Unit
Ref 4: Subsea BOP Control System Components & System Integration
Ref 5: Subsea BOP Control System Trouble Shooting
Ref 6: Marine Riser System
Ref 7: Marine Riser System, Inspection, Maintenance & Repair
Ref 8: Marine Riser System Testing
Ref 9: Subsea Marine Riser Testing Procedures
Ref 10: Testing of Subsea BOP System
Ref 11: Subsea BOP Inspection, Maintenance & Repair
Ref 12: Job Safety Analysis for Subsea BOP Maintenance and Inspection
Ref 13: Completions & Workover (C/WO) Risers
Ref 14: Subsea Drilling Riser System Configuration, Components & Architecture
Ref 15: Diverter & Motion Compensating Equipment
Ref 16: Choke & Kill Lines & Drilling String
Ref 17: Deepwater Drilling Steps
Ref 18: Deepwater Drilling JSA
Ref 19: Deepwater Drilling Calculations
Ref 20: Deepwater Drilling Case Study with JSA
Ref 21: Offshore Drilling Buoyancy Calculation Example
Ref 22: Offshore Drilling Pressure Calculation Example
Ref 23: Offshore Drilling Mud Flow Rate Calculation Example
Ref 24: Offshore Drilling Torque and Drag Calculation Example
Ref 25: Offshore Drilling Hole Volume Calculation Example
Ref 26: Offshore Drilling Riser Tension Calculation Example

Assessment

Participant underpinning knowledge of Deepwaters Subsea Drilling Engineering Tooling Mechanism & Techniques will be accessed with short answer multiple-choice questionnaire at the conclusion of the course.

Outcome

Participants will gain an in debt understanding of Deepwaters Subsea Drilling Engineering Tooling Mechanism & Techniques along with its architecture. They will also be able to function with minimum supervision as a Subsea Engineer for IOCs, subsea pipeline company contractor, vendor or installation company.

Professional Certificate

Issued directly by Chess Subsea Engineering Europe.

Participant may be presented for Offshore Petroleum Training Organization (OPITO) Certification.

How to Register

Click here to download registeration booklet on msword and email completed booklet to info@chesssubseaengineering.org directly.

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