Horizontal Well Placement in Heavy Oil Reservoirs - HOWP
Course
In San Francisco (USA)
Description
-
Type
Course
-
Location
San francisco (USA)
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Start date
Different dates available
Minerals and rocks; Plate tectonics; Geological times; Weathering and erosion; Deposition; Diagenesis; Reservoirs; Structural geology and petroleum; Origin, migration, and trapping of petroleum
Facilities
Location
Start date
Start date
Reviews
Subjects
- Petroleum
- Gas
- Geology
- Quality
- Production
- Quality Training
- Planning
- Project
- IT Development
Course programme
Minerals and rocks; Plate tectonics; Geological times; Weathering and erosion; Deposition; Diagenesis; Reservoirs; Structural geology and petroleum; Origin, migration, and trapping of petroleum
Assessing source rock quality, maturity, and petroleum-generating potential; Correlation: oil-to-oil, oil-to-source rock, gases-to-source rock; Applications of mud gas isotope data and mud gas compositions; Assessment of reservoir continuity, lateral and vertical changes in oil gravity and viscosity; Geochemical assessment of frac height; Geochemical allocation of commingled production; Worldwide exploration and production case studies; Determining the origin of hydrocarbon gases found in aquifers; Project planning using actual case studies
Minerals and rocks; Plate tectonics; Geological times; Weathering and erosion; Deposition; Diagenesis; Reservoirs; Structural geology and petroleum; Origin, migration, and trapping of petroleum
History of LWD development; Modern tool types; Standard techniques in well log correlation and its relationship to geosteering; Identification of data quality and mitigating factors; Requirements necessary to steer a well; Directional terminology; Introduction to Total Hole Deviation as a geosteering tool; Special geosteering techniques, including Derived log, Azimuthal Gamma Ray, Additional LWD curves for identification of sweet spot, Drilling plans, Grids, Projected surfaces, Other LWD curves: gas, resistivity, other; Geosteering for 12 to 15 wells
Minerals and rocks; Plate tectonics; Geological times; Weathering and erosion; Deposition; Diagenesis; Reservoirs; Structural geology and petroleum; Origin, migration, and trapping of petroleum
Assessing source rock quality, maturity, and petroleum-generating potential; Correlation: oil-to-oil, oil-to-source rock, gases-to-source rock; Applications of mud gas isotope data and mud gas compositions; Assessment of reservoir continuity, lateral and vertical changes in oil gravity and viscosity; Geochemical assessment of frac height; Geochemical allocation of commingled production; Worldwide exploration and production case studies; Determining the origin of hydrocarbon gases found in aquifers; Project planning using actual case studies
Minerals and rocks; Plate tectonics; Geological times; Weathering and erosion; Deposition; Diagenesis; Reservoirs; Structural geology and petroleum; Origin, migration, and trapping of petroleum
History of LWD development; Modern tool types; Standard techniques in well log correlation and its relationship to geosteering; Identification of data quality and mitigating factors; Requirements necessary to steer a well; Directional terminology; Introduction to Total Hole Deviation as a geosteering tool; Special geosteering techniques, including Derived log, Azimuthal Gamma Ray, Additional LWD curves for identification of sweet spot, Drilling plans, Grids, Projected surfaces, Other LWD curves: gas, resistivity, other; Geosteering for 12 to 15 wells
Minerals and rocks; Plate tectonics; Geological times; Weathering and erosion; Deposition; Diagenesis; Reservoirs; Structural geology and petroleum; Origin, migration, and trapping of petroleum
Assessing source rock quality, maturity, and petroleum-generating potential; Correlation: oil-to-oil, oil-to-source rock, gases-to-source rock; Applications of mud gas isotope data and mud gas compositions; Assessment of reservoir continuity, lateral and vertical changes in oil gravity and viscosity; Geochemical assessment of frac height; Geochemical allocation of commingled production; Worldwide exploration and production case studies; Determining the origin of hydrocarbon gases found in aquifers; Project planning using actual case studies
Minerals and rocks; Plate tectonics; Geological times; Weathering and erosion; Deposition; Diagenesis; Reservoirs; Structural geology and petroleum; Origin, migration, and trapping of petroleum
History of LWD development; Modern tool types; Standard techniques in well log correlation and its relationship to geosteering; Identification of data quality and mitigating factors; Requirements necessary to steer a well; Directional terminology; Introduction to Total Hole Deviation as a geosteering tool; Special geosteering techniques, including Derived log, Azimuthal Gamma Ray, Additional LWD curves for identification of sweet spot, Drilling plans, Grids, Projected surfaces, Other LWD curves: gas, resistivity, other; Geosteering for 12 to 15 wells
Minerals and rocks; Plate tectonics; Geological times; Weathering and erosion; Deposition; Diagenesis; Reservoirs; Structural geology and petroleum; Origin, migration, and trapping of petroleum
Assessing source rock quality, maturity, and petroleum-generating potential; Correlation: oil-to-oil, oil-to-source rock, gases-to-source rock; Applications of mud gas isotope data and mud gas compositions; Assessment of reservoir continuity, lateral and vertical changes in oil gravity and viscosity; Geochemical assessment of frac height; Geochemical allocation of commingled production; Worldwide exploration and production case studies; Determining the origin of hydrocarbon gases found in aquifers; Project planning using actual case studies
Minerals and rocks; Plate tectonics; Geological times; Weathering and erosion; Deposition; Diagenesis; Reservoirs; Structural geology and petroleum; Origin, migration, and trapping of petroleum
History of LWD development; Modern tool types; Standard techniques in well log correlation and its relationship to geosteering; Identification of data quality and mitigating factors; Requirements necessary to steer a well; Directional terminology; Introduction to Total Hole Deviation as a geosteering tool; Special geosteering techniques, including Derived log, Azimuthal Gamma Ray, Additional LWD curves for identification of sweet spot, Drilling plans, Grids, Projected surfaces, Other LWD curves: gas, resistivity, other; Geosteering for 12 to 15 wells
Additional information
Expenses
The course price depends on the selected location or venue.
In-house training
This course can also be delivered as in-house training for your team at your offices or at any convenient location. PetroSkills can provide you with a flexible and cost-effective solution for your staff training.
Horizontal Well Placement in Heavy Oil Reservoirs - HOWP
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