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Advanced Well Log Analysis and Interpretation: Kuala Lumpur

Esanda

Monday, 13 August 2018 at 09:00 - Friday, 17 August 2018 at 17:00 (Malaysia Time Malaysia (Kuala Lumpur) Time)

Advanced Well Log Analysis and Interpretation: Kuala...

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Standard admission 12 Aug 2018 £2,950.00 £0.00

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Course overview

Well logs are detailed records of the geologic formations by a borehole. These are comprehensive and important data gathered in any phase of a well’s history to identify petrophysical properties which in turn defines the economic value of a reservoir. The techniques in analysis and interpretation of well logs are therefore essential in identification of oil recovery.

In the E&P business, integrated petroleum engineering studies and field development plans are management tools which are used to maximize economic recovery of hydrocarbons. Petrophysical engineers fulfill a key role in analyzing and interpreting subsurface reservoir data, which form the basis for reservoir models. E&P technical staff and team leaders involved in integrated studies require more than general skills in petrophysical and interpretation techniques to produce quality input to development plans.

The trainer will provide understanding of practical and new techniques and tools in well logging with the support of case studies. At the end of the course, participants will be able to quantitatively identify the reservoir quality, measure the storage capacity of the reservoir through integrating the reservoir and petrophysical data and to improve oil recovery.

The course is designed for

The course is designed for all professionals with background and experience in petrophysics, whose job requires more extensive knowledge of core and log relations. They include petrophysicists, well log analysts, geologists, geophysicists, geoscientists, reservoir engineers, petroleum engineers and other E&P professionals.

Learning objectives

  • Drive a consistent and effective Petrophysics inputs to improve oil recovery
  • Understand rock properties and pore geometry
  • Capitalize on integration reservoir and petrophysical data to maximize economic recovery of hydrocarbons
  • Attain the knowledge and practical use of total and effective porosity calculation
  • Determine and understand new techniques and tools in well logging
  • Acquire knowledge on permeability and rock quality interpretation
  • Learn and practice integration of core analysis and open-hole logs
  • Learn from practical experiences and case studies scenarios

Course outline

Introduction to Petrophysics

  • What is Petrophysics?
  • What are the Rock Physical properties?
  • What is Well Logging?

Open-Hole Logging Tools

Definition, measurements, application, equations of the following tools:

  • Lithology Tools: GR, NGT, SP
  • Porosity Tools: BHC, FDC, CNL
  • Resistivity Tools: DLL, DIL, MSFL
  • Other Tools: EPT, Dipmeter, RFT

Exercises: Calculations of GR, SP, Sonic, etc.

Introduction to Logging While Drilling (LWD)

  • Lithology Tools
  • Resistivity Tools
  • Porosity Tools

Logging Operations and Quality Control

  • Logging Tools Operations
  • Log Quality Control

Logging Operations and Quality Control

  • Lithology interpretation
  • Porosity calculations
  • Rw determination
  • Petrophysical parameters (a,m,n)
  • Vshale estimation
  • Fluid Saturation
  • Permeability

Practical Exercises

Cased-Hole Logging Tools

Definition, measurements, application, equations of the following tools:

  • Thermal Decay Time (TDT, RST)
  • Cement Bond (CBL-VDL)
  • Production Logging (PLT)

Recent and Advanced Tools

Definition, measurements, application, equations of the following tools:

  • Geological Tools: FMS, FMI
  • Resistivity Tools: HRLA, ARI, AIT
  • Porosity Tools: APS, LDT, DSI
  • Other Tools: NMR, CMR, MDT, ECS

Formation Evaluation

  • Rock Physics (from core and log)
  • Porosity Types
  • Permeability
  • Permeability and Porosity Relationships
  • Fluid Saturation
  • Lithology Interpretation Vsh Calculation
  • Rw determination methods
  • Petrophysical parameters (a,m,n)
  • Archie’s Relationship
  • Core Analysis and Core-Log Relationship

Advanced Formation Evaluation

Reservoir Petrophysical Model Evaluation

Modern Approaches and Techniques in Petrophysics

  • Multi-Well Bases Study Using:
    • Multi-Well Data-Base
    • Key Well Study
  • Data Normalization
  • Variable Petrophysical Parameter values
  • Standardization of Petrophysical Parameters

Lithology Determination

  • Lithology Model
  • Lithological Parameters

Petrophysical Parameters Determination

  • Archie’s Parameters
  • Most Problematic Parameters
  • Old Methods (Constant Value)
  • New Methods (Variable Values)


"I would recommend this course to my colleagues without hesitation."
- NCOC, Kazakhstan

Do you have questions about Advanced Well Log Analysis and Interpretation: Kuala Lumpur? Contact Esanda

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When & Where

No.1 Jalan Utarid U5/13 Section U5
Kuala Lumpur, Selangor 40150
Malaysia

Monday, 13 August 2018 at 09:00 - Friday, 17 August 2018 at 17:00 (Malaysia Time Malaysia (Kuala Lumpur) Time)


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Organiser

Esanda

Esanda is a specialist training provider serving the global upstream oil and gas industry. Our course leaders are practicing industry specialists who develop our in house courses and work with clients to build bespoke training for their staff.  Our operations are supported by our UK and Australia offices.

We pride ourselves on being able to bring hundreds of man years of experience to the training sector and the positive feedback we receive from our satisfied clients.

Our courses have evolved over 20 years with a focus on Field Development Planning, which includes a strong emphasis on costing and economic analysis as well as concept selection for our clients. The range of clients includes those involved in Onshore, Offshore, Subsea, GTL, LNG and unconventional developments. This work and client training has allowed us to build strong expertise with practical and up to date knowledge of the subject areas.

For details of our course terms and conditions, click here.

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Advanced Well Log Analysis and Interpretation: Kuala Lumpur
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