4D Training & Consultancy

Oil and Gas Technical Trainings

Delayed Coking Operations and Troubleshooting

Control the coking cycle, fractionator and coke handling system while diagnosing foaming, carryover, drum and cutting hazards.

5 DaysIn-house, online, or customized deliveryCorporate teams and professional groupsLevel: Advanced

Overview

Practical learning for workplace transfer.

Control the coking cycle, fractionator and coke handling system while diagnosing foaming, carryover, drum and cutting hazards. Participants work through five connected modules using discipline-specific evidence, calculations and an applied decision case.

Prerequisites

Prior exposure to process operations, PFDs and engineering calculations is recommended.

Objectives

  • Interpret delayed-coking process and feed behavior using traceable evidence and an explicit decision criterion.
  • Calculate furnace, transfer line and drum cycle using traceable evidence and an explicit decision criterion.
  • Diagnose fractionator and vapor-recovery operation using traceable evidence and an explicit decision criterion.
  • Evaluate decoking, coke handling and critical hazards using traceable evidence and an explicit decision criterion.
  • Deliver coker upset diagnosis workshop using traceable evidence and an explicit decision criterion.

Target audience

  • Process, operations and process-safety engineers
  • Control, inspection and technical-assurance specialists
  • Technical assurance, data and reliability practitioners
  • Supervisors and discipline leads responsible for operational decisions

Program outline

A clear structure for the learning journey.

Program outline

Outline points are grouped in one designed block instead of being treated as separate module cards.

Module 1: Delayed-coking process and feed behavior

Interpret the source measurements, engineering assumptions and acceptance criteria governing Delayed-coking process and feed behavior

Calculate or model the key performance quantities for Delayed-coking process and feed behavior and reconcile the result against field evidence

Complete a Delayed Coking Operations and Troubleshooting exercise that converts Delayed-coking process and feed behavior findings into a documented technical decision

Module 2: Furnace, transfer line and drum cycle

Calculate or model the key performance quantities for Furnace, transfer line and drum cycle and reconcile the result against field evidence

Diagnose failure modes, uncertainty and operating limits associated with Furnace, transfer line and drum cycle

Build an assurance checklist, action owner and review trigger for Furnace, transfer line and drum cycle

Module 3: Fractionator and vapor-recovery operation

Diagnose failure modes, uncertainty and operating limits associated with Fractionator and vapor-recovery operation

Complete a Delayed Coking Operations and Troubleshooting exercise that converts Fractionator and vapor-recovery operation findings into a documented technical decision

Interpret the source measurements, engineering assumptions and acceptance criteria governing Fractionator and vapor-recovery operation

Module 4: Decoking, coke handling and critical hazards

Complete a Delayed Coking Operations and Troubleshooting exercise that converts Decoking, coke handling and critical hazards findings into a documented technical decision

Build an assurance checklist, action owner and review trigger for Decoking, coke handling and critical hazards

Calculate or model the key performance quantities for Decoking, coke handling and critical hazards and reconcile the result against field evidence

Module 5: Coker upset diagnosis workshop

Build an assurance checklist, action owner and review trigger for Coker upset diagnosis workshop

Interpret the source measurements, engineering assumptions and acceptance criteria governing Coker upset diagnosis workshop

Diagnose failure modes, uncertainty and operating limits associated with Coker upset diagnosis workshop

Materials provided

  • Course-specific technical workbook
  • Engineering datasets and diagnostic exercises
  • Decision templates and quality checklists
  • Applied capstone case
  • 4D Certificate of Completion

Training Options

Programs can be delivered in-house, online, or in a blended format depending on your team's schedule, location, and learning objectives. When an external certificate or exam is included, certification rules and fees remain under the relevant awarding body's policies, while 4D provides the training and preparation support.

Why choose 4D

4D adapts the technical depth, evidence, calculations and capstone decisions to the client's assets, operating context and participant responsibilities.

Related courses

Oil and Gas Technical Trainings

Advanced Well Control Equipment: Subsea BOPs

This advanced training course focuses on the technical understanding and operational mastery of Subsea Blowout Preventer (BOP) systems, which are critical for maintaining well control in deepwater drilling environments. Designed for experienced professionals, the course provides a comprehensive review of subsea BOP components, control systems, emergency shutdown mechanisms, and maintenance best practices. Emphasis is placed on the complexity, high operational cost, and risk management associated with subsea well control. Participants will gain both theoretical and practical knowledge, including troubleshooting techniques, hydraulic diagnostics, and real world case studies from offshore operations. By the end of this course, participants will be able to: Understand the structure and function of key subsea BOP components, Identify and interpret control systems and hydraulic circuits, Perform BOP maintenance, testing, and certification procedures, Recognize failure modes and implement troubleshooting strategies, apply emergency well control procedures using the BOP, analyze subsea BOP operations from safety, efficiency, and cost perspectives.

View course
Oil and Gas Technical Trainings

Artificial Lift Systems: ESP, Gas Lift, and Rod Pump Operations

This technical training program gives participants a practical understanding of artificial lift systems used in oil production, including electrical submersible pumps, gas lift, and rod pump operations. The course focuses on system selection, operating principles, monitoring, troubleshooting, failure modes, optimization, and field-level decision-making for production reliability.

View course
Oil and Gas Technical Trainings

Asset Integrity, Corrosion Management and Risk-Based Inspection

This technical course helps oil and gas teams manage asset integrity, corrosion threats, and inspection priorities. Participants learn integrity management principles, corrosion mechanisms, damage classification, inspection planning, risk-based inspection, fitness-for-service concepts, and practical coordination between operations, inspection, maintenance, and engineering.

View course

Speak to 4D

Plan the right training or consultancy path for your team.

Share a few details and 4D will help route your inquiry toward corporate training, consultancy, assessment, Phoenix-enabled support, or a tailored program.