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Well Control Course
More than 2 million students worldwide

Well Control Course

5

Master the full spectrum of well control — from subsurface pressure fundamentals to blowout response and capping operations. This course equips drilling professionals with the technical knowledge and hands-on procedures needed to detect kicks early, execute kill operations correctly, and keep every well safe.

Dedika for businesses

What you will learn:

You will build a solid foundation in subsurface pressure systems, wellbore mechanics, and drilling fluid management. From there, you will learn to recognise kick indicators, operate BOP equipment, and perform kill sheet calculations using the Driller's Method and Wait and Weight Method. The course covers choke operation, pressure management during kill circulation, and special situations such as gas migration and kicks during tripping. You will also study well control in land, offshore, deepwater, and HPHT environments. Blowout response, capping stack operations, and relief well planning are included to prepare you for the most critical scenarios. Human factors, regulatory compliance, and digital monitoring tools round out your competency as a complete well control professional.

How you study in practice Well Control Course

How you practise Well Control Course

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Course content

8 Chapters • 37 LessonsDuration between 4 and 360 hours (you decide)

Chapter 1See details

Foundations of Well Control

  • Lesson 1 • Wellbore Pressure Relationships

    Explains hydrostatic pressure, equivalent circulating density, and pressure windows. Builds the quantitative framework used throughout the course.

  • Lesson 2 • Drilling Fluid Functions and Properties

    Examines how drilling fluid density and rheology maintain primary well control. Links fluid selection to pressure management objectives.

  • Lesson 3 • Well Architecture and Casing Design

    Introduces casing strings, wellhead components, and their roles in containing wellbore pressure. Provides structural context for barrier concepts.

  • Lesson 4 • Subsurface Pressure Concepts

    Covers formation pressure, overburden, and fracture gradient as the basis for all well control decisions. Connects pressure theory to practical wellbore stability.

Chapter 2See details

Kick Detection and Monitoring

  • Lesson 1 • Causes of Kicks

    Identifies conditions that allow formation fluids to enter the wellbore, including swabbing and lost circulation. Establishes causal understanding before detection skills.

  • Lesson 2 • Shut-In Procedures and Verification

    Details hard and soft shut-in methods and post-shut-in pressure reading procedures. Ensures students can confirm a kick and gather data for kill planning.

  • Lesson 3 • Primary Kick Indicators

    Covers flow rate increase, pit gain, and pump pressure changes as definitive kick signs. Trains rapid recognition of the most reliable surface signals.

  • Lesson 4 • Monitoring Equipment and Practices

    Reviews pit volume totalisers, flow sensors, and mud logging systems used for continuous surveillance. Connects equipment capability to reliable early kick detection.

  • Lesson 5 • Secondary Kick Indicators

    Examines supporting indicators such as gas cutting, torque changes, and fill on trips. Reinforces pattern recognition when primary signs are ambiguous.

Chapter 3See details

Blowout Prevention Equipment

  • Lesson 1 • Subsea BOP Considerations

    Introduces subsea stack architecture, riser systems, and acoustic or multiplex control differences from surface BOPs. Extends BOP knowledge to offshore deepwater contexts.

  • Lesson 2 • BOP Control Systems

    Covers hydraulic accumulator units, remote panels, and control fluid requirements for reliable BOP actuation. Links control system design to response time requirements.

  • Lesson 3 • Choke Manifold and Auxiliary Equipment

    Examines choke manifold configuration, adjustable chokes, and kill line valves used during well control operations. Prepares students for controlled pressure management.

  • Lesson 4 • BOP Testing and Inspection

    Establishes pressure test procedures, test frequencies, and acceptance criteria for BOP integrity assurance. Connects testing discipline to regulatory compliance and safety.

  • Lesson 5 • BOP Stack Components

    Describes annular preventers, ram types, and choke and kill lines as an integrated pressure containment system. Provides component-level knowledge before stack operation.

Chapter 4See details

Kill Methods and Calculations

  • Lesson 1 • Kill Sheet Preparation

    Covers data collection, volume calculations, and kill sheet completion before any kill operation begins. Establishes the calculation foundation for all kill methods.

  • Lesson 2 • Driller's Method

    Details the two-circulation kill procedure, circulating the kick out before weighting up mud. Teaches step-by-step pressure management for the first and second circulations.

  • Lesson 3 • Volumetric and Lubricate-and-Bleed Methods

    Addresses controlled pressure bleed-down techniques when circulation is not possible. Prepares students for non-circulating well control scenarios.

  • Lesson 4 • Wait and Weight Method

    Explains single-circulation kill using pre-weighted kill mud and a declining drillpipe pressure schedule. Compares advantages and limitations against the Driller's Method.

  • Lesson 5 • Special Kick Situations

    Addresses gas migration, underground blowouts, and kicks taken while tripping or cementing. Extends kill calculation skills to non-standard well control scenarios.

Chapter 5See details

Choke Operation and Pressure Management

  • Lesson 1 • Complications During Kill Operations

    Covers equipment failures, secondary kicks, and formation breakdown events that disrupt planned kill procedures. Prepares students to adapt kill plans dynamically.

  • Lesson 2 • Reading and Interpreting Gauges

    Trains simultaneous monitoring of drillpipe pressure, casing pressure, and pump stroke rate during kill operations. Builds the situational awareness needed for correct choke adjustments.

  • Lesson 3 • Choke Operating Principles

    Explains how adjusting choke opening controls backpressure and maintains bottomhole pressure during circulation. Connects choke physics to kill method pressure schedules.

  • Lesson 4 • Choke Operator Drills and Simulation

    Uses simulated kill scenarios to practice choke adjustments in response to changing pressures and pump rates. Reinforces decision-making speed and accuracy under realistic conditions.

Chapter 6See details

Well Control Barriers and Risk Management

  • Lesson 1 • Well Control Risk Assessment

    Applies hazard identification, likelihood-consequence matrices, and bow-tie analysis to well control scenarios. Connects risk tools to pre-job planning and operational decision-making.

  • Lesson 2 • Incident Investigation and Lessons Learned

    Examines root cause analysis methods applied to well control incidents and near-misses. Closes the risk management loop by converting incidents into preventive improvements.

  • Lesson 3 • Well Barrier Philosophy

    Defines primary and secondary barriers, barrier elements, and the principle of maintaining two independent barriers at all times. Provides the conceptual framework for barrier-based well design.

  • Lesson 4 • Pre-Job Well Control Planning

    Covers well-specific contingency plans, kick tolerance calculations, and pre-job safety meetings. Ensures students can translate risk assessments into actionable operational plans.

Chapter 7See details

Well Control in Specific Drilling Environments

  • Lesson 1 • High-Pressure High-Temperature Well Control

    Covers HPHT pressure and temperature effects on fluid density, equipment ratings, and kick tolerance. Prepares students for the narrow pressure windows common in HPHT wells.

  • Lesson 2 • Offshore Platform and Jack-Up Operations

    Addresses shallow-water BOP configurations, conductor casing challenges, and riser considerations for fixed and jack-up rigs. Connects offshore structural constraints to well control adaptations.

  • Lesson 3 • Land Drilling Well Control

    Reviews surface BOP configurations, diverter systems, and rig-specific shut-in procedures for land operations. Establishes baseline for comparing offshore adaptations.

  • Lesson 4 • Managed Pressure Drilling Overview

    Introduces MPD as a proactive pressure management technique that extends conventional well control capabilities. Positions MPD within the broader well control framework.

  • Lesson 5 • Deepwater Well Control

    Examines riser margin, hydrate formation, and dual-gradient drilling challenges unique to deepwater environments. Builds on subsea BOP knowledge from the equipment chapter.

Chapter 8See details

Blowout Response and Well Capping

  • Lesson 1 • Capping Stack Operations

    Details capping stack design, deployment logistics, and pressure integrity testing after installation. Builds on subsea BOP knowledge to address post-blowout containment.

  • Lesson 2 • Blowout Response Team Coordination

    Addresses incident command structure, specialist contractor roles, and communication protocols during a blowout response. Prepares students for multi-organisation coordination under crisis conditions.

  • Lesson 3 • Blowout Classification and Dynamics

    Classifies surface and underground blowouts by flow path, fluid type, and severity. Establishes the diagnostic framework needed before selecting a response strategy.

  • Lesson 4 • Post-Blowout Well Integrity Restoration

    Examines wellbore integrity assessment, cement remediation, and return-to-production verification after a blowout is controlled. Completes the full blowout response lifecycle.

  • Lesson 5 • Relief Well Planning and Drilling

    Covers relief well trajectory design, ranging tool use, and dynamic kill calculations for intersecting a blowing well. Presents relief wells as the ultimate well control contingency.

Certification

Your valid completion certificate

This course is for you:

  • Drilling engineers: seeking structured mastery of well control principles and procedures.

  • Roughnecks and derrickmen: ready to advance into supervisory or technical rig roles.

  • Mud engineers: wanting to understand how fluid decisions connect to pressure safety.

  • HSE professionals: supporting drilling operations and needing deeper well control context.

  • Petroleum engineering students: bridging classroom theory with real-world rig safety practice.

  • Wellsite geologists: aiming to interpret pressure data and contribute to kick response.

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