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TOG23

INTEGRATED RESERVOIR ANALYSIS

Introduction

The aim of this course is to equip you with the knowledge and skills needed to understand, analyze, and maintain oil and gas tanks comprehensively. You will learn about the fundamentals of data analysis related to tanks, various analysis techniques and tools, and how to analyze reports and evaluate the performance of integrated tanks. Additionally, practical case studies will be explored.

Who Should Attend

Engineers specializing in analysis, design, and maintenance, as well as technicians with a focus on tank maintenance. This course is also beneficial for managers, supervisors, and consultants working in the oil and gas industry, particularly in the field of integrated tank analysis.

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Course Content:

Day 1

  • Introduction to integrated reservoir analysis and its importance.
  • Concept of integrated reservoir and its main components.
  • Basics of analyzing reservoir data such as capacity, reduction ratio, heating ratio, and thermal reactivity index.

Day 2

  • Types of integrated reservoirs and their various uses.
  • Explaining the importance of measurements used in integrated reservoir analysis such as temperature, gas pressure, and liquid level.
  • Factors affecting the performance of integrated reservoirs such as gas composition and different liquid concentrations.

Day 3

  • Techniques and tools used in integrated reservoir analysis in the oil and gas industry.
  • Introduction to specialized computer programs for integrated reservoir analysis and how to use them.
  • Study of actual operating conditions of integrated reservoirs and analysis of the obtained data.

Day 4

  • Analysis of maintenance reports and inspections for integrated reservoirs.
  • Evaluation of the performance of integrated reservoirs and identification of potential problems and required improvements.
  • Explanation of the necessary tools for maintenance and repair of integrated reservoirs and their practical application.

Day 5

  • Study of a realistic case study of integrated reservoir analysis and presentation of a report on the results and recommendations.
  • Discussion of common problems in integrated reservoir analysis and how to avoid them.
  • Review of best practices in integrated reservoir analysis and their implementation.

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