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Pore Pressure and Fracture Gradient Prediction: Kuala Lumpur

Esanda

Monday, 25 June 2018 at 09:00 - Friday, 29 June 2018 at 17:00 (Malaysia Time Malaysia (Kuala Lumpur) Time)

Pore Pressure and Fracture Gradient Prediction: Kuala...

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Ticket Type Sales End Price Fee Quantity
Standard admission 24 Jun 2018 £2,950.00 £0.00

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Event Details

Course Description

This course covers the petrophysical (logs LWD ), geophysical (seismic gravity magnetic) and Engineering methods and techniques required to confidently predict the Pore Pressures and Fracture Gradients of the geological formations to be encountered during the drilling of exploration appraisal and development wells, both onshore & offshore. The pore pressure prediction (PPP) course will assist during the planning stage of a well design for the Drilling Fluids Programme, the Casing Programme as well as estimating the reserves and resources by knowing the reservoir pressure of the target geological formation or horizon before drilling.

The course is designed for

  • Drilling Engineers
  • Reservoir Engineers
  • Seismic Interpreters
  • Asset Managers
  • Exploration Geophysicists
  • Data Processing Geophysicists
  • Exploration Geologists
  • Development Geologists
  • Petrophysicists
  • Others who will be involved in the planning and drilling of exploration, appraisal and development wells such as Drilling Fluids Engineer, Mud Logger etc.

Course outline

Petroleum Geology Review

General PP Theory & Calculation Methods
Reservoir rocks
Reservoir rock properties
Reservoir fluids
Non-reservoir rocks
Porosity
Permeability
Water Saturation
Bulk Density
Structure of Petroleum Reservoirs
Pressure Gradients
Hydrostatic Pressure
Formation Pressure
Fracture Pressure
Overburden Stress
Direct Pressure Measurements
Repeat Formation Test
Drill Stem Tests (DST)
Indirect Pressure Measurements
Kick Shut-in Pressures
Connection Gases
Leak-off Tests (LOT)
Formation Injectivity Tests (FIT)
Determination of Bulk Density
Bulk Density from Cuttings
Bulk Density from Sonic Logs
Calculation of Overburden Gradient
Balancing Wellbore Pressures
Mud Hydrostatic
Equivalent Circulating Density (ECD)
Surge Pressures
Swab Pressures
Kick Tolerance
Kick Tolerance example

Abnormal Pressure Theory

Fracture gradients
Pressure profiles
Effective stress law
Relation of Porosity & lithology to effective stress
Eaton´s Method
Poissons from Shaliness Index
Daines Method

Origin and Causes of Abnormal Pressures

Aquafers
Tectonic Movements
Compaction and un-compaction (mechanical)
Compaction and un-compaction (chemical)
Clay Diagenesis
Thermal expansion
Thermal cracking of Hydrocarbons
Detection of abnormal pressures before drilling
Detection of abnormal pressures during drilling
Detection of abnormal pressures after drilling
Under-pressured Formations
Reductions in Confining Pressure or Fluid Volume
Apparent Under-pressure
Overpressure Requirements
Overpressure Model
Permeability
Fluid Type
Causes of Overpressure
Overburden Effect
Tectonic Loading
Faulting
Deltaic Environments
Diapirism & Salt Domes
Increases in Fluid Volume
Clay Diagenesis
Gypsum Dehydration
Hydrocarbon or Methane Generation
Aquathermal Expansion
Osmosis
Hydrostatic causes
Hydraulic Head
Hydrocarbon Reservoirs

Direct Detection Methods

Pressure gages
Drill-stem tests (DST)
Wireline Formation Tests (RFT, MDT, FIT, LOT)

Drilling Methods for PPP

Real-time PPP
Drilling rate (ROP)
d-exponent / Corrected or modified d-exponent
d-exponent Shift Changes & Limitations
Lithology
Bit Type and Wear
Fluid Hydraulics
Drilling porosity logs
Formation Pressure logs
Torque, Drag & Over-pull
Shale cuttings
Shale factor
Volume, shape, size of cuttings
Real-time Indicators
Significant Parameter Changes
Directional Drilling
Tripping Indicators
Lagged Indicators
Background Gas Trends
Sealed Overpressure
Transitional Overpressure
Connection Gas
Temperature
Geothermal Gradient
Flowline Temperature
Delta T
Trends
Analysis of Drilled Cuttings
Shale Density
PPP Software

Petrophysics Review

Sonic logs / Acoustic logs
Density Logs
Neutron logs
Resistivity logs
NMR logs
MWD / LWD logs
Caliper Logs

Petrophysical Methods for PPP

Resistivity logs (resistivity, conductivity, Shale FF, salinity)
Sonic / acoustic logs (slowness)
Bulk density logs (FDT)
Hydrogen Index (CNL)
Nuclear Magnet resonance logs (NMR)
Thermal Neutron Capture Cross-section (TDT)
Down-hole gravity data
WIRELINE LOG / LWD INDICATORS
Sonic Transit Time (ITT)
Resistivity
Density Porosity
Neutron Porosity
Gamma Ray Wireline Examples

Geophysical Methods for PPP

Seismic
Gravity
Magnetics
VSP / Inverse VSP

Course terms and conditions

Do you have questions about Pore Pressure and Fracture Gradient Prediction: Kuala Lumpur? Contact Esanda

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When & Where

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

Monday, 25 June 2018 at 09:00 - Friday, 29 June 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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Pore Pressure and Fracture Gradient Prediction: Kuala Lumpur
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