Showing posts with label Field. Show all posts
Showing posts with label Field. Show all posts

Thursday, June 6, 2013

Statoil discovers oil in Grane field in the North Sea

Posted on 05 June 2013

Statoil, together with partners in the Grane Unit, has made a new oil discovery in the Grane field in the North Sea. Statoil, together with partners in the Grane Unit, has made a new oil discovery in the Grane field in the North Sea.

Statoil and its partners are in the process of concluding drilling operations in exploration well 25/11-27 in the Grane Unit. Drilled by Songa Offshore’s Songa Trym semisubmersible, the well proved an oil column of 20 meters in the Heimdal Formation. The estimated volume of the discovery is in the range of 18 to 33 million bbls of recoverable oil.

“We are pleased with having proven new very high value resources in the Grane area,” Tore Løseth, vice president for exploration in the North Sea, said. “The oil discovery is located directly north of the Grane field and can be developed effectively.”

Timely near-field exploration is an important element in Statoil’s exploration strategy for the Norwegian continental shelf (NCS). This implies exploration close to existing installations that in the near future will have spare capacity for new tie-ins. “Near-field exploration is an important contribution in Statoil’s exploration portfolio on the NCS,” Mr Løseth said. “Even though volumes in these discoveries are moderate compared with the big finds over the last few years, these are fast, high-value barrels that are important for extending the production life of existing installations.”

In 2013, about 40% of Statoil’s exploration wells on the NCS will be near-field exploration. In addition to the Grane area, this includes the Oseberg, Fram/Gjøa and Tampen areas.

Exploration well 25/11-27 is situated in the Grane Unit in the North Sea. Statoil is operator with an interest of 36.66%. The partners are Petoro (28.94%), ExxonMobil Exploration & Production Norway (28.22%) and ConocoPhillips Skandinavia (6.17%).


View the original article here

Sunday, April 15, 2012

Baker Hughes Successfully Field Tests Industry's First Large-Diameter Sidewall Coring Tool

HOUSTON, TX - April 27, 2010 - Baker Hughes (NYSE: BHI) has successfully field tested the industry's first large-diameter sidewall coring tool offshore Brazil. The MaxCOR™ rotary sidewall coring tool was developed in response to an operator's request for 1.5-inch diameter core samples greater than two inches in length.

During the first field test, the client requested 90 cores throughout the reservoir. MaxCOR recovered 94 cores in four runs. During a subsequent field test at a second exploration area, Baker Hughes deployed MaxCOR to successfully complete a 54-core program in two runs.

"MaxCOR provides three times the volume of core compared to standard one-inch diameter sidewall coring tools. The higher core volumes provide better results when analyzing mechanical properties, relative permeability, compressibility, capillary pressure, electrical parameters and geomechanical properties," says Gary Cresswell, vice president of wireline systems for Baker Hughes. "More accurate measurement of these attributes helps operators better understand the reservoir."

Currently, MaxCOR is the only coring tool capable of recovering large-diameter core samples after a well is drilled to cover intervals either not cored with conventional coring operations or where conventional coring operations did not achieve 100-percent recovery. Plus, MaxCOR recovers a much larger core sample in the same time it takes to deploy conventional one-inch coring tools. Based on the successful field tests, Baker Hughes anticipates future applications of MaxCOR technology in markets characterized by complex reservoirs and higher-cost challenging operating environments.

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About Baker HughesBaker Hughes provides reservoir consulting, drilling, formation evaluation, completion and production products and services to the worldwide oil and gas industry.

Media Relations: Kathy Shirley, +1.713.439.8135, kathy.shirley@bakerhughes.com

Investor Relations: Gary R. Flaharty, +1.713.439.8039, gflaharty@bakerhughes.com

H. Gene Shiels, +1.713.439.8822, gene.shiels@bakerhughes.com


View the original article here

Saturday, April 14, 2012

Baker Oil Tools Sets New Horizontal Gravel Packing Records - Captain Field, UK North Sea

HOUSTON, TEXAS (October 5, 2001) - Baker Oil Tools recently set another horizontal gravel packing record with a 7324 ft (2232m) completion in the Texaco operated Captain field in the UK North Sea. This surpassed the previous horizontal gravel packing record of 4,000 ft, which Baker Oil Tools set in November 1998. The Korean Captain Company Limited is a partner in the field.

In May 2001, the Texaco Captain 13/22a - B2 well was completed at a total depth of 19, 990 ft MD (6093 m) as an open hole gravel pack using 5-1/2-in. x 230 micron with medium weave Baker Oil Tools EXCLUDER™ screens. Prior to the completion, the well consisted of a 11-3/4-in. x 9-5/8-in. tapered casing string set at 7,048ft MD (2148 m) and a drilled 8-1/2-in. hole to a total depth of 14,372 ft MD (4380 m). The horizontal section was begun at a true vertical depth of 2,915 ft (888 m).

Gravel Packing Objectives

The objective of gravel packing is to stabilize the open hole, prevent formation sand movement, and protect screens from plugging and erosion. The resulting completion should provide reliable long-term well productivity and enhanced reservoir drainage. To accomplish these objectives, Texaco and Baker designed and implemented a systems approach that integrates customized drill-in fluids, high-rate displacement and hole cleaning procedures, and Baker Oil Tools' EXCLUDER™ Extended-Longevity Sand Control Screen, CS-300 Open Hole Gravel Packing system, BetaBreaker™ Valves and FLCV™'s (fluid loss control valve).

The completion procedure was designed to control fluid loss in the horizontal section with very high permeability (1?12 Darcy) and a very small operating window between formation pressure and fracture pressure.

Completion Operations

The horizontal hole was drilled with a 9.6 ppg water based calcium carbonate drill-in fluid. Then the entire well was displaced to 9.6 ppg filtered NaCl/KCl brine using a high rate well displacement. The cleanliness of the brine returns from the well were less than 0.01% solids content prior to deploying the gravel pack assembly.

The gravel pack assembly with 4-in. internal washpipe string and Baker CS-300™ Open Hole Gravel Pack Service Tools was successfully deployed in the well. A Baker Model "SC-2R" Packer was set at 6,827 ft MD. The end of the screen assembly was at 13,990 ft MD. The service tools, designed to maintain hydrostatic pressure on the open hole filter cake, were successfully released from the packer and the various circulating positions were confirmed. In addition, four Baker Oil Tools BetaBreaker valves were run in the washpipe to assist in maintaining bottomhole treating pressure below fracture pressure.

Using Baker's GPDesign horizontal gravel pack design software, engineers determined the required pump rate and gravel concentration to pack the well. The well was successfully gravel packed with 174,920 lbs of 16/30 gravel pack sand or 104% of the open hole annular volume calculated from the MWD ADN caliper log. Completion brine was used as the gravel carrier fluid. Approximately 70% returns were maintained while pumping the gravel pack which took 60 hrs. Sand loading was maintained at a very low level (average 0.15 ppga) throughout the job. During pumping, all four BetaBreaker valves operated as designed, allowing the treatment to be pumped at a constant rate of 7 bpm without exceeding fracture pressure. After the gravel pack screened out, the excess gravel was successfully circulated from the workstring, and the service string was then pulled above the Baker Oil Tools FLCV. Prior to closing the valve losses of 60 bph were noted, and losses were reduced to zero when the valve was closed.

Earlier Completions

The first of the 4,000-ft horizontal gravel packs was installed in Captain in November 1998 following extensive technical, operations and logistics planning. Using a brine carrier fluid, 137,000 lbs of gravel was placed in the annulus between the borehole and the EXCLUDER screen. Gravel placement was successful despite the presence of a non-cemented open hole sidetrack in the final 4,000 ft long horizontal interval.

The gravel packed wells in the field have exhibited more consistent well productivities in line with reservoir performance expectations and with no signs of plugging. As the need to gravel pack laterals of increasing length continues, Baker Oil Tools has developed new technology to meet these challenges. Some examples include EXCLUDER screen, the CS-300 Open Hole Gravel Packing System, the BetaBreaker Valve, and the FLCV fluidloss control valve Baker Oil Tools, is a world leader in total completion, workover, and fishing solutions that help exploration and production companies optimize their hydrocarbon recovery investment. Baker Oil Tools solutions are based on advanced downhole and surface technology, practically applied, to help operators produce at the highest levels and the lowest cost throughout the life of the reservoir.

Baker Hughes is a leading provider of drilling, formation evaluation, completion and production products and services to the worldwide oil and gas industry.


View the original article here

LLOG/EXMAR Who Dat Field Article

Through collaborative initiatives between LLOG Exploration Co. LLC and Baker Hughes, a series of three wells in LLOG’s Who Dat field were successfully drilled and completed, including multizone well architecture integrated with intelligent well systems. Optimization of the well architecture and completion design was achieved through a comprehensive understanding of the reservoir requirements and long-term production goals of LLOG’s Who Dat field. The overall technical and operational success of the project can be attributed to a combined team using Baker Hughes’ expertise across multiple technology areas and LLOG’s operational knowledge. Together with LLOG, Baker Hughes devoted some of its most experienced engineers and technicians, with years of experience ranging from 11 to 43.

The Who Dat field’s first well, MC 547 SS01, was completed in June of 2010 and set the bar for subsequent expectations. Well MC 503 SS02 was completed in September of 2010 as an intelligent well, and MC 503 SS01 was completed in January of 2011 with three frac packs integrated with intelligent well systems. The well designs included two intelligent well systems that enabled the operator to produce from separate zones or comingle production, resulting in optimal management of reserve recovery and well performance. Despite the complexity and scope of technology, the wells were drilled and completed with industry-leading efficiency and safety performance while meeting the goals under the planned cost.

Precise wellbore placement

Baker Hughes’ drilling and evaluation team delivered precise wellbore placement and critical formation data integral to the success of LLOG’s Who Dat project by using the AutoTrak G3™ rotary steerable system. In addition, an array of logging-while-drilling (LWD) services were implemented, including Baker Hughes’ OnTrak™ measurementwhile- drilling (MWD) service, LithoTrak™ LWD porosity service, SoundTrak™ LWD acoustics service, and TesTrak™ LWD formation pressure-testing service. To further define reservoir characteristics, a post-processing technique for logging mechanical properties was used to aid in determining reservoir compressibility and its affect on recoverable reserves.

The combined portfolio of technologies and services were implemented to minimize the overall project risk. Baker Hughes’ AutoTrak G3 rotary steering system combined with real-time MWD/LWD data enabled the rotary steering system to drill complex well targets. TesTrak services were used in the first well during the drilling phase to measure formation pressures in an unknown pressure regime, as well as provide fluid gradients and reservoir fluid mobility. The real-time formation pressure testing provides data to update the geological model as well as improve wellsite safety and enhance drilling efficiency. The LithoTrak advanced LWD porosity service was used in all three wells in the 12 ¼-in. and 8 ½-in. reservoir sections. LithoTrak provides neutron porosity, bulk density and acoustic caliper measurements. In addition, the bulk density measurement can be displayed as a borehole image spanning 360°.

Download the PDF to read more.

DOWNLOAD PDF (810.3 KB) AutoTrak G3 Rotary Steerable System image

Our rotary steerable drilling system allows you to navigate precisely into the target using superior directional control in the most challenging well profiles.

View All Rotary Steerable Systems LithoTrak Bulk Density and Neutron Porosity image

Even under challenging borehole conditions, you can be confident we’re offering the industry’s most accurate porosity measurements.

View All Logging While Drilling SoundTrak Acoustic Formation Measurements image

Minimize wellbore breakouts and possible collapse using reliable, real-time compressional and shear wave travel times in fast and slow formations.

View All Logging While Drilling OnTrak Integrated MWD and LWD image

Get directional, drilling dynamics, ECD, and geological information including gamma-ray and resistivity measurements from a single, compact BHA module.

View All Logging While Drilling

View the original article here

Thursday, March 22, 2012

Baker Hughes Awarded Horizontal Well Completion Contract for China Gas Field

HOUSTON, TX – June 8, 2010 – PetroChina recently awarded Baker Hughes (NYSE: BHI) a contract to supply 77 multistage openhole fracture completion systems for horizontal wells in the tight gas sands of the Changquing Field, China's second largest onshore oil and gas field. Baker Hughes was awarded the one-year contract based on successful deployment of its Frac-Point™ technology in the Sulige gas field last year.


PetroChina is expanding its horizontal well, multistage fracturing activities to increase gas production from the tight gas sands in the Changquing Field. Characterized by low permeability, low pressure and low yields, reserve recovery from Changquing is technically complex – requiring innovations like multistage fracture completions to overcome the geologic challenges. Baker Hughes will provide Frac-Point systems for three-quarters of the total 102-well horizontal drilling program.


"We successfully deployed Frac-Point at the Sulige Field after other companies had limited success," says Richard Ward, president of Asia Pacific operations for Baker Hughes. "Based on this achievement, PetroChina chose Frac-Point for the majority of these difficult completions in the Changquing Field."


The Frac-Point system uses specially designed short-radius, openhole packers and frac sleeves to isolate intervals of a horizontal section and pinpoint fracture treatment placement. The one-trip system allows the fracture treatments for each section to be pumped on the same day, eliminating the expense of mobilizing and demobilizing pumping equipment. Frac-Point improves overall production by providing greater control of the frac treatment along the entire length of the horizontal lateral.


# # #


About Baker Hughes

Baker Hughes provides reservoir consulting, drilling, pressure pumping, formation evaluation, completion and production products and services to the worldwide oil and gas industry.


CONTACTS: Media Relations: Kathy Shirley, +1.713.439.8135, kathy.shirley@bakerhughes.com


Investor Relations: Gary R. Flaharty, +1.713.439.8039, gflaharty@bakerhughes.com


H. Gene Shiels, +1.713.439.8822, gene.shiels@bakerhughes.com


View the original article here

LLOG/EXMAR Who Dat Field Article

 

Through collaborative initiatives between LLOG Exploration Co. LLC and Baker Hughes, a series of three wells in LLOG’s Who Dat field were successfully drilled and completed, including multizone well architecture integrated with intelligent well systems. Optimization of the well architecture and completion design was achieved through a comprehensive understanding of the reservoir requirements and long-term production goals of LLOG’s Who Dat field. The overall technical and operational success of the project can be attributed to a combined team using Baker Hughes’ expertise across multiple technology areas and LLOG’s operational knowledge. Together with LLOG, Baker Hughes devoted some of its most experienced engineers and technicians, with years of experience ranging from 11 to 43.


The Who Dat field’s first well, MC 547 SS01, was completed in June of 2010 and set the bar for subsequent expectations. Well MC 503 SS02 was completed in September of 2010 as an intelligent well, and MC 503 SS01 was completed in January of 2011 with three frac packs integrated with intelligent well systems. The well designs included two intelligent well systems that enabled the operator to produce from separate zones or comingle production, resulting in optimal management of reserve recovery and well performance. Despite the complexity and scope of technology, the wells were drilled and completed with industry-leading efficiency and safety performance while meeting the goals under the planned cost.


Precise wellbore placement


Baker Hughes’ drilling and evaluation team delivered precise wellbore placement and critical formation data integral to the success of LLOG’s Who Dat project by using the AutoTrak G3™ rotary steerable system. In addition, an array of logging-while-drilling (LWD) services were implemented, including Baker Hughes’ OnTrak™ measurementwhile- drilling (MWD) service, LithoTrak™ LWD porosity service, SoundTrak™ LWD acoustics service, and TesTrak™ LWD formation pressure-testing service. To further define reservoir characteristics, a post-processing technique for logging mechanical properties was used to aid in determining reservoir compressibility and its affect on recoverable reserves.


The combined portfolio of technologies and services were implemented to minimize the overall project risk. Baker Hughes’ AutoTrak G3 rotary steering system combined with real-time MWD/LWD data enabled the rotary steering system to drill complex well targets. TesTrak services were used in the first well during the drilling phase to measure formation pressures in an unknown pressure regime, as well as provide fluid gradients and reservoir fluid mobility. The real-time formation pressure testing provides data to update the geological model as well as improve wellsite safety and enhance drilling efficiency. The LithoTrak advanced LWD porosity service was used in all three wells in the 12 ¼-in. and 8 ½-in. reservoir sections. LithoTrak provides neutron porosity, bulk density and acoustic caliper measurements. In addition, the bulk density measurement can be displayed as a borehole image spanning 360°.


Download the PDF to read more.

DOWNLOAD PDF (810.3 KB) AutoTrak G3 Rotary Steerable System image

Our rotary steerable drilling system allows you to navigate precisely into the target using superior directional control in the most challenging well profiles.

View All Rotary Steerable Systems LithoTrak Bulk Density and Neutron Porosity image

Even under challenging borehole conditions, you can be confident we’re offering the industry’s most accurate porosity measurements.

View All Logging While Drilling SoundTrak Acoustic Formation Measurements image

Minimize wellbore breakouts and possible collapse using reliable, real-time compressional and shear wave travel times in fast and slow formations.

View All Logging While Drilling OnTrak Integrated MWD and LWD image

Get directional, drilling dynamics, ECD, and geological information including gamma-ray and resistivity measurements from a single, compact BHA module.

View All Logging While Drilling

View the original article here