Perforating con't

Perforating Gun Systems and Charges

We provide the two major types of perforating gun systems, customized systems, and other perforating guns for special applications, such as tubing punchers. Regardless of the type of gun or perforating application, gun performance is optimized through design and manufacturing QC, as verified by testing.

The shaped charge is the most critical gun system component to manufacture with maximum quality consistency. Shaped charges are made by assembling four components: case, main explosive pellet, primer, and liner. We manufacture each component to exact tolerances to ensure that the liner collapses to form the jet according to the design of the charge. For routine manufacturing production runs, each charge must perform to a minimum target penetration standard related to API RP 19B Section 1.

Capsule Gun Perforating Systems

Capsule guns—also called "capsule-charge guns"—are exposed gun systems, with the individual shaped charges sealed in pressure-tight protective capsules mounted on a carrier strip or links that are exposed to the well environment.

Capsule guns are typically used in through-tubing perforation applications and generate superior performance compared with hollow carrier guns of the same diameter. Schlumberger capsule guns are developed through an extensive engineering and manufacturing program. They are holistically designed as a system, comprising the carrier strips or links, charges, and detonating cords, to provide maximum perforator performance. The entire capsule gun system is then manufactured following rigorous Schlumberger QA standards.

There are two designs of capsule guns: expendable (the charges and mounting assembly are left as debris after firing) and retrievable (debris is left, but the mounting is recovered). The latter design is also called semiexpendable. Some capsule gun systems have a selectivity option that allows shooting more than one zone per run.

PowerSpiral

The PowerSpiral retrievable perforating gun system for through-tubing wireline operations incorporates shock-absorbing material between the charges to attenuate shock waves during the detonation and significantly increase shot performance.

Enerjet

Enerjet high-performance exposed capsule gun systems for through-tubing operations are available in retrievable and expendable versions.

Pivot Gun

Pivot Gun systems are wireline through-tubing guns with excellent performance, ideal for workover reperforating or shooting past deep formation damage

Hollow Carrier Gun Perforating Systems

Hollow carrier guns are pressure-tight steel tubes in which shaped charges are positioned. For gun ODs of 2 7/8 in and larger, hollow carrier guns perform better than exposed guns because they use larger charges, optimized phasing, and increased shot density. Hollow carrier guns are also used when debris is unacceptable and in hostile conditions that preclude using exposed guns.

Schlumberger hollow carrier guns are designed as systems, comprising specific carriers, charges, detonating cords, and boosters, to provide maximum perforator performance. All Schlumberger gun systems are manufactured to our rigorous QA standards. The main types of hollow carrier guns are
PowerJet Omega Deep Penetrating Shaped Charge

PowerJet Omega deep penetrating shaped charge is the latest-generation PowerJet shaped charge from Schlumberger.
PURE Perforating System for Clean Perforations

The PURE system optimizes dynamic underbalance in the well to consistently eliminate or minimize perforation damage.
HSD High Shot Density Gun Systems

HSD guns have a high shot density of 4 spf or higher with optimum phasing patterns and the largest high-performance charges available for natural, stimulated, and sand control completions. For applications that require a large AOF, the Bigshot 21 gun system provides a shot density of 21 spf.
Port Plug Guns and HEGS High-Efficiency Gun Systems

Port Plug guns shoot the charges through replaceable plugs in a reusable gun carrier and feature highly flexible multiple-gun selectivity for remote operations, enabling the perforation of large intervals with minimal hardware. HEGS High-Efficiency Gun Systems are similar to Port Plug guns, with longer, expendable hollow carriers that are faster to load and run.
OrientXact Oriented Perforating System

Setting new standards for alignment accuracy and verification of charge orientation, the OrientXact tubing-conveyed oriented perforating system is ideally suited for long and high-deviation wells.
Frac Gun Perforating Systems

Engineered for the fracture stimulation of wells, Frac Gun systems have additional applications in slimhole wells, sand control operations, and coalbed methane (CBM) wells.

P4 Post-Perforation Propellant Pulse

The pressure pulse generated from downhole ignition of the gas produced by propellant burning has multiple applications in the oil industry. Propellant is an energetic material that generates a large amount of gas while burning. Of the many energetic materials available, Schlumberger uses a solid propellant chosen on the basis of its safety record, stability, predictable burn, and more than double the volumetric energy of the leading industry propellant.

Schlumberger P4 post-perforation propellant pulse system delivers the maximum energy produced to the formation to enhance nearwellbore treatments. Conveyable on wireline, tubing, or coiled tubing, the P4 system is run stand-alone or in combination with a perforating gun system for a one-step process.

The patented ignition device uses a radially inward burn to produce a predictable burn rate that results in complete deflagration (a fast burn). Because the propellant deflagrates instead of detonating like an explosive, the generated pressure pulse is powerful enough to break the formation without damaging the casing or adjacent plugs or packers. This highly effective method surgically treats intervals that otherwise would not be reached by a standard hydraulic fracturing job; it can also be used as a near-wellbore treatment tool for depleted reservoirs.

Applications

  • Prefracturing treatment to reduce fracturing pressure and improve perforation breakdown
  • One-step enhanced perforating method
  • Wells with zonal isolation complications where other stimulation techniques are not possible
  • Near-wellbore stimulation to bypass skin and improve productivity in depleted reservoirs, horizontal wells, or large intervals requiring local treatment

WPP Wireline Perforating Platform

The WPP Wireline Perforating Platform integrates a rugged arsenal of sensors and actuators for optimizing well productivity while perforating. Use of the WPP platform maximizes flexibility inpositioning perforating guns and enables real-time monitoring of results. Safer, more reliable perforating results from the system’s intelligent control of the downhole power supply.

WPP oriented perforating service provides single-trip conveyance and orientation of perforating guns on wireline, coiled tubing, or a tractor system through tubing into vertical or deviated wells. The WPP motor system rotates the guns into firing position relative to the preferred fracture plane to optimize hydraulic fracturing operations.

The completion imaging configuration of the WPP platform is used to shoot through a tubing string in a multiple completion without hitting parallel strings. The "mapper” tool’s multiple completion string detection and selective shooting of multiple guns provides perforation and production access to reservoirs that would otherwise require a costly and time-consuming workover.

Borehole temperature and pressure data can be acquired by the WPP platform before, during, and after perforating. Interpretation of these real-time data can provide a good indication of the formation pressure and reservoir parameters (permeability and skin effect) to guide operations. Data acquisition is not interrupted by detonator initiation. Up to 20 guns can be connected to the bottom of the tool for selective firing through the use of addressable switch technology

Perforating

Perforating

You want maximum productivity from your reservoir. Whether in new or existing wells, maximum production depends on optimized perforating.

Schlumberger engineered perforating systems can help you achieve the best production or injection in your well by optimizing the relationship between the gun system, wellbore, and your reservoir. Schlumberger perforating systems enable you to

* measure to fully characterize the reservoir rock and fluids
* perforate with the optimum design of gun system and charge
* clean the perforations by controlling wellbore dynamics while perforating
* monitor to maximize reservoir productivity.

Perforating Gun Systems and Charges

Schlumberger offers capsule and hollow carrier gun systems with a wide variety of perforating charges for every environment.
Pipe Recovery and Remedial Services

Schlumberger has solutions for drillpipe, coiled tubing, and tubing recovery and special techniques for cement squeeze, punching tubing, junk shots, and other applications.
Tubing-Conveyed Perforating

Tubing-conveyed perforating (TCP) allows long, heavy gun strings to be run in all well conditions.
Wireline Perforating

Wireline (or electric line) is the traditional way to run perforating guns, providing the advantages of real-time depth control and selectivity.
Completion Perforating

Completion perforating enables large, long strings of guns to be installed with the completion and fired with the right completion fluid in place for immediate cleanup and production.
Completion Perforating Without Killing the Well

The CWOK process uses underbalance, dynamic underbalance (PURE), or extreme underbalance perforating for clean perforations, then removes the guns without killing the well.
Slickline Perforating

Slickline is a fast and efficient conveyance method that can be used for many explosive services such as perforating, setting plugs or packers, or cutting tubing.
Coiled Tubing Perforating

Coiled tubing allows perforating guns to be run into extended-reach or horizontal wells and also allows longer, heavier gun strings to be run.

Microseismic Hydraulic Fracture Monitoring

Microseismic Hydraulic Fracture Monitoring

StimMAP services for hydraulic fracturing monitoring record microseismic activity in real time during the fracturing process. A full range of software provides modeling, survey design, microseismic detection and location, uncertainty analysis, data integration, and visualization for interpretation, wherever and whenever decisions must be made. Computer imagery is used to monitor the activity in 3D space relative to the location of the fracturing treatment. Then the monitored activities are animated to show progressive fracture growth and the subsurface response to pumping variations.

The StimMAP service uses Petrel seismic-to-simulation software to provide accurate characterization of the locations, geometry, and dimensions of a hydraulic fracture system. Advanced processing techniques provide fracture characterization that enhances fracture models and reservoir characterization for production simulation.

Microseismic monitoring, which delivers information about the changing stress of a reservoir can be used to enhance reservoir development in tight gas completions, fault mapping, reservoir imaging, waterflood monitoring, drilling waste disposal, and thermal recovery.

StimMAP LIVE Microseismic Fracture Monitoring Service

StimMAP LIVE microseismic fracture monitoring in real time provides fracture monitoring within 30 seconds of microseismic activity. Based on proprietary coalescence microseismic mapping (CMM) that allows processing more events per minute than would be possible with hand picking, there is close agreement for the fracture geometry on the same dataset. The CMM technique provides more events because multiple arrivals can be handled in a single time window.

Accurate fracture characterization

Understanding fracture geometry is key to effective stimulation treatments and well economics. Microseismic fracture monitoring provides imaging of the geometry of a hydraulic fracture to accurately measure fracture geometry. Accurately measuring the fracture geometry offers precise data on hydraulic fracture systems to increase understanding of the fracturing process. This increased understanding in real time

  • reduces well stimulation costs
  • optimizes field drilling plans
  • allows changes in perforation strategies and plan diversion schemes to be made on the fly.

Treatment Execution

Treatment Execution

Schlumberger develops innovative methods and provides the right equipment to perform stimulation treatments in any environment.
Candidate Recognition

Analyzing client data is critical in determining the economic viability of oil and gas reservoirs.
Monitoring Stimulation Treatments

Accurate characterization of the locations, geometry, and dimensions of a hydraulic fracture system makes optimization of reservoir performance possible.
Fracturing Computer-Aided Treatment | InterACT for Stimulation Operations
Offshore vessels

BIGORANGE XVIII Stimulation Vessel | DeepSTIM Stimulation Vessel | DeepSTIM Pronto Offshore Stimulation Equipment | FlexSTIM Offshore Stimulation System
Well Optimization Service

Customize stimulation treatment design and execution to specific reservoir conditions.

Candidate Recognition

Better Wells

Candidate recognition is a key element in improving the economics for producing oil and gas. The process begins with Schlumberger engineers gathering and organizing well data. Then a NODAL systems analysis is performed to determine if the well is producing at or near maximum potential. Specific factors restricting production and their location are determined and wells with the potential for enhanced production from a stimulation treatment are identified.

After the assessment, the overall field is mapped to show the geographic relationship of the wells, their production potentials, and other selected parameters. After identification of the candidates, the Schlumberger engineer develops detailed stimulation treatments.

The DESC Design and Evaluation Services for Clients, where a Schlumberger engineer and the complete range of software and hardware are placed in the client's office, helps in the candidate recognition process.

Monitoring Stimulation Treatments

Accurate characterization of the locations, geometry, and dimensions of a hydraulic fracture system makes optimization of reservoir performance possible.

FracCAT Fracturing Computer-Aided Treatment

Monitor, Record & Control Stimulation Treatments in Real Time

The FracCAT fracturing computer-aided treatment system comprises hardware and software for monitoring, controlling, recording and reporting all types of fracturing treatments. Its real-time displays, plots, surface schematics and wellbore animations present a clear picture of the treatment as it occurs, providing decision-makers with real-time detailed job information from the surface to the perforations.

Technology and software

Using FracCAT technology, treatment design is followed and execution is precise. Integration with the Schlumberger FracCADE design and evaluation software allows job designs to be loaded directly into the FracCAT software.

During the job, the FracCAT system tracks the design and displays actual job parameters compared to planned values. FracCAT software also uses the design to control proppant and additive concentrations in as many as three blenders at the same time. This control capability ensures that actual concentrations follow the plan. Job data are sent to the FracCADE software in real time. If the FracCADE analysis indicates a need for design changes, the changes can be imported directly into the FracCAT software without interrupting the treatment. The FracCAT system works in conjunction with a local area network (LAN) environment, which enables networking of all PCs at the wellsite and also provides a connection to the Internet through satellite or cellular telephone technology. The Internet connectivity provides the ability to transmit real-time data from the remote wellsite to anywhere in the world for real-time analysis.

FracCAT controls make deviations from the schedule, such as extending a proppant stage or starting flush early, as simple as a single mouse-click.

Hardware

FracCAT hardware includes the latest high-performance PC systems. Innovations such as space-saving flat-panel displays and multiple monitors provide best-in-class presentation of data. All these features inside an ergonomically designed control cabin offer the ultimate job control environment and make the FracCAT system the premier tool for fracturing treatments.

Offshore vessels

We bring stimulation services to the world's high seas. BIGORANGE XVIII is purpose-built for environmentally safe North Sea operations. Rapidly deployed DeepSTIM vessels in the Gulf of Mexico are reliable in severe weather, remaining offshore for long periods. Galaxie is an advanced, versatile well stimulation vessel.
BIGORANGE XVIII Stimulation Vessel

Purpose-built stimulation vessel designed for North Sea operations.
DeepSTIM Stimulation Vessel

Advanced, versatile stimulation fleet equipped with dynamic positioning systems.
DeepSTIM Pronto Offshore Stimulation Equipment

Modular, portable, flexible system designed for offshore supply vessels.
FlexSTIM Offshore Stimulation System

Flexible, high-capacity, rapid stimulation system.

PowerSTIM Well Optimization Service

Maximize Production with Enhanced Reservoir Characterization

PowerSTIM well optimization service gives you fit-for-purpose, solution-oriented technology that is effective in a broad range of reservoirs. We customize stimulation treatment design and execution to the specific conditions in your well or field, based on detailed, accurate formation evaluation and modeling.

Based on our analysis, treatment options, such as acid treatments, fracture treatments, or sand management, are considered. The knowledge gained from each stimulation treatment is used to improve the next job in a continuous, closed-loop process that reduces costs, maximizes production, and increases recovery.

A multidisciplinary team

The first step in the PowerSTIM process is forming the team of geoscientists, reservoir and production engineers, and stimulation designers. Initially, the team concentrates on a small group of wells, typically three to five, depending on field and reservoir complexity.

After collecting and analyzing all available data, the team builds a customized model that describes geology and reservoir dynamics. This model, which accurately predicts key parameters and forecasts production, is used to design optimized treatments for the first group of wells.

After these treatments are executed according to the design, the team evaluates the results and uses them to update the model, important information to optimize the next group of completions. The updated model often is available to decision makers within a few hours after the evaluation is finished.

A better approach

The PowerSTIM informed decision report or IDR an "in-time" report, documents the solutions with a complete, historical record for each well treated. InterACT real-time monitoring and data delivery improves collaboration, allowing you to keep an eye on the treatments as they occur.

Unconventional Gas Stimulation

Unconventional Gas Stimulation

Better reservoir knowledge and increasingly sensitive technologies are making production of unconventional gas economically viable and more efficient. This efficiency is bringing tight gas, coalbed methane, and gas hydrates into the reach of more companies around the world.
Microseismic Hydraulic Fracture Monitoring

Directly measure hydraulic fracture geometry.
Shale Gas Dynamic Fluid Diversion Service

Combine fluid-based, tool-free fracture diversion technology with real-time microseismic monitoring.
Staged Fracturing and Completion Services

Maximize reservoir contact with the most efficient and effective services for each well.

Conventional Sandstone Stimulation con't

Scale Control
Remove and Control Scale Buildup

Scale control challenges are the leading cause of declining production worldwide. They cost the petroleum industry millions of dollars each year in scale control and removal costs and in deferred production. Scale control through chemical inhibition is preferred for maintaining well productivity, but when scale forms on the wellbore, more advanced scale control techniques must be applied.

Schlumberger scale control services are not only effective at removing scale and preventing repricipitation, they are quick and nondamaging to the wellbore, tubing, or formation environment.
Jet Blaster Scale Removal
Polymer-Free Fracturing Fluids

The Schlumberger ClearFRAC family of polymer-free fracturing fluids enables a larger effective fracture half-length. The ClearFRAC fluid system also reduces friction pressure, allowing operators to save costs with reduced pumping equipment. Viscosity remains constant at a given temperature until contacted by formation fluids or added chemical breakers.

Applications include

* nitrogen and carbon dioxide (CO2) foam fracturing
* stimulation in hard-to-reach zones
* offshore operations.

The three ClearFRAC formulations each have specific applications.
CO2 Polymer-Free Fracturing Fluid

Significantly reduce operations costs with nitrogen foam fracturing treatments.
Polymer-Free Fracturing Fluid

Maximize conductivity with polymer-free fracturing.
High-Permeability, Polymer-Free Fracturing Fluid

Enhance fracture efficiency using the innovative viscoelastic surfactant (VES) system for low friction pressure and excellent proppant-carrying capacity.
Gelled-Oil Fracturing Fluid

YF GO III continuous-mix, gelled oil service

YF GO III is a patented gelled, oil-base sandstone fluid designed primarily for treating water-sensitive formations. Originally designed for continuous-mix operations, it is used successfully in both continuous and batch-mix conditions. YF GO III can gel diesel, condensates, and a wide variety of crudes as the oil base.
YF GO IV high-temperature, gelled-oil service

YF GO IV gelled-oil sandstone fluids are designed for broad use in sandstone applications where gelled oil is commonly used (i.e., water-sensitive formations). Originally designed for use only with clean, dry diesel, YF GO IV can be used with many dry, uncontaminated crude oils. The advantages of using YF GO IV include high-temperature stability, low static viscosity, and predictable rheological profiles.
HiWAY Channel Fracturing

How it works

To allow more fracture conductivity in conventional fracturing jobs, HiWAY channel fracturing fundamentally changes the way that proppant fractures generate conductivity. It engineers stable flow channels into the proppant pack that are connected from the tip of the fracture back toward the wellbore, creating the optimal connection between the reservoir and the wellbore. The productivity of the fracture is decoupled from the actual permeability of the proppant used, so rather than flowing through the proppant in the pack, hydrocarbons flow through stable channels—meaning infinite fracture conductivity.

Traditional losses in proppant pack conductivity from crushing, fines, fluid damage, multiphase flow, and non-Darcy effects are eliminated, ensuring more fluid and polymer recovery, meaning optimized production.
What it combines

A unique combination of placement and materials engineering, completions techniques, and process control equipment enables the success of HiWAY channel fracturing. The stability of the flow channels is ensured by using a proprietary fiber, which maintains the structures from surface to reservoir until the fracture has closed and the in situ stress of the rock takes over.
Where it’s used

HiWAY channel fracturing provides more fracture conductivity and optimized production for conventional consolidated rock fracturing treatments of oil and gas wells. For example, it has been successfully applied in the Rocky Mountain region of the US and the Sierras Blancas formation in Argentina for major improvements in time to sales, fluid recovery, initial production rate, and average-well estimated ultimate recovery (EUR).
Organic Clay Acid Stimulation Fluid
High-Performance Formation Cleanup Treatment

Wells in the sandstone formations common to the U.S. Gulf Coast generally have migrating fines that can plug the near-wellbore area and severely limit production. Although conventional stimulation fluids,such as hydrochloric (HCl) or mud acid, can clean up the wellbore and stimulate the sandstone, they do not penetrate deep into the formation nor stabilize fines. Conventional acids can also have adverse effects in formations with certain types of clays, like zeolite and chlorite, that are unstable in HCl acid.

OCA organic clay acid stimulation fluid penetrates deep into the sensitive formation and stabilizes clays and fines without the adverse effects of conventional acid systems.
Innovative acid system

OCA fluid is a high-performance acid system designed for sensitive sandstone sandstone formations that can present the biggest challenge to conventional acidizing treatments. Because of the damaging precipitation of secondary and tertiary reaction products, conventional mud acid has the highest chance of failure in formations with very high temperature or a high clay content that is sensitive to HCl.

OCA fluid combines a retardation effect and advanced chelation technology for stimulation deep into the reservoir with minimal precipitation. It reduces the risk of diminished production as well as secondary and tertiary mineral precipitation that can block pores. Its retarded properties allow a reduced corrosivity. OCA fluid also combats sludging problems that plague conventional acid systems and stabilizes formation fines while maintaining the integrity of the sandstone structures to promote long-term production.
Laboratory testing

Sequential spending tests that simulate deep formation penetration have demonstrated that the reaction between sandstone minerals and conventional acid systems can cause silica gel precipitation.

With conventional acids, silicon can deplete in a spent acid solution as it penetrates deep into the formation. In laboratory tests, the ratio of silicon to aluminum decreases as the acid penetrates deeper into the formation. This decrease indicates the precipitation of formation-damaging hydrated silica gel.

As OCA fluid penetrates deep into the formation, tests show increasingly higher silicon and aluminum concentrations. OCA fluid keeps all the dissolved ions in solution. The OCA fluid continues to dissolve without forming damaging secondary and tertiary hydrated silica precipitation.

Jetting scale removal service for effective one-trip wellbore cleaning.
ScaleFRAC Scale Inhibitor

Scale inhibitor service that protects wellbores and propped fractures from scale damage and related production declines.
ScaleMAT Acid-Compatible Scale Inhibitor

Acid-compatible scale inhibitor that enables scale inhibition at the same time as matrix stimulation.
ScalePROP Scale Inhibitor Proppant

Scale-inhibitor-impregnated proppant for long-term protection for fracturing proppant packs.
ScaleSOLV Carbonate Scale Dissolver

Carbonate scale dissolver to remove scale chemically without corrosion.

Monitoring Stimulation Treatments

Accurate characterization of the locations, geometry, and dimensions of a hydraulic fracture system makes optimization of reservoir performance possible.

FracCAT Fracturing Computer-Aided Treatment

Monitor, Record & Control Stimulation Treatments in Real Time

The FracCAT fracturing computer-aided treatment system comprises hardware and software for monitoring, controlling, recording and reporting all types of fracturing treatments. Its real-time displays, plots, surface schematics and wellbore animations present a clear picture of the treatment as it occurs, providing decision-makers with real-time detailed job information from the surface to the perforations.

Technology and software

Using FracCAT technology, treatment design is followed and execution is precise. Integration with the Schlumberger FracCADE design and evaluation software allows job designs to be loaded directly into the FracCAT software.

During the job, the FracCAT system tracks the design and displays actual job parameters compared to planned values. FracCAT software also uses the design to control proppant and additive concentrations in as many as three blenders at the same time. This control capability ensures that actual concentrations follow the plan. Job data are sent to the FracCADE software in real time. If the FracCADE analysis indicates a need for design changes, the changes can be imported directly into the FracCAT software without interrupting the treatment. The FracCAT system works in conjunction with a local area network (LAN) environment, which enables networking of all PCs at the wellsite and also provides a connection to the Internet through satellite or cellular telephone technology. The Internet connectivity provides the ability to transmit real-time data from the remote wellsite to anywhere in the world for real-time analysis.

FracCAT controls make deviations from the schedule, such as extending a proppant stage or starting flush early, as simple as a single mouse-click.

Hardware

FracCAT hardware includes the latest high-performance PC systems. Innovations such as space-saving flat-panel displays and multiple monitors provide best-in-class presentation of data. All these features inside an ergonomically designed control cabin offer the ultimate job control environment and make the FracCAT system the premier tool for fracturing treatments.

Offshore vessels

We bring stimulation services to the world's high seas. BIGORANGE XVIII is purpose-built for environmentally safe North Sea operations. Rapidly deployed DeepSTIM vessels in the Gulf of Mexico are reliable in severe weather, remaining offshore for long periods. Galaxie is an advanced, versatile well stimulation vessel.
BIGORANGE XVIII Stimulation Vessel

Purpose-built stimulation vessel designed for North Sea operations.
DeepSTIM Stimulation Vessel

Advanced, versatile stimulation fleet equipped with dynamic positioning systems.
DeepSTIM Pronto Offshore Stimulation Equipment

Modular, portable, flexible system designed for offshore supply vessels.
FlexSTIM Offshore Stimulation System

Flexible, high-capacity, rapid stimulation system.

Conventional Sandstone Stimulation

Conventional Sandstone Stimulation

Matrix stimulation and hydraulic fracturing techniques are designed to repair and improve the natural connection of the wellbore with the reservoir.
Scale Control

Remove and prevent scale within wellbores and the reservoir.
Jet Blaster Scale Removal | ScaleFRAC Scale Inhibitor | ScaleMAT Acid-Compatible Scale Inhibitor | ScalePROP Scale Inhibitor Proppant | ScaleSOLV Carbonate Scale Dissolver
Polymer-Free Fracturing Fluids

Achieve a larger effective fracture half-length with ClearFRAC polymer-free fluids.
CO2 Polymer-Free Fracturing Fluid | Polymer-Free Fracturing Fluid | High-Permeability, Polymer-Free Fracturing Fluid
Gelled-Oil Fracturing Fluid

Use water-free, oil-base fluid for fracturing treatments in water-sensitive formations.
HiWAY Channel Fracturing

Experience more fracture conductivity by removing the link between fracture flow and proppant conductivity.
Organic Clay Acid Stimulation Fluid

Penetrate deep into sensitive sandstone matrix formations.
Matrix Acidizing Diverter

Direct treating fluids away from high-water-cut intervals.
High-Water-Cut Acidizing Diverter

Reduce water cut and increase production with an advanced acid diverter.
Simplified Sandstone Acidizing System

Stimulate sandstone reservoirs with a single fluid-stage formulation.
Proppant Flowback Control

Prevent flowback from hydraulic fractures.

Proppant Distribution

Create a fiber-based network within the fracturing fluid.
Microseismic Hydraulic Fracture Monitoring

Measure hydraulic fracture geometry in real time.
Staged Fracturing and Completion Services

Maximize reservoir contact by offering the most efficient and effective services for each well.

Carbonate

Carbonate Reservoir Stimulation

Understanding and addressing the specific challenges and technical risks that carbonates present has put Schlumberger at the forefront of technology development to meet the challenges presented by carbonate reservoirs and to help our customers optimize productivity. Because of the complex nature of carbonate reservoirs, Schlumberger has a variety of solutions for optimum stimulation.
Fracturing and Completion Services

Maximize reservoir contact by applying the most efficient and effective services for each well.
Conventional | Intervention | Permanent | Dynamic
Deep-Penetrating, High-Temperature Acid

Use SuperX emulsified acid, a highly retarded HCl system, to overcome acid penetration problems in stimulating reservoirs above 250 degF [121 degC].
Viscoelastic Diverting Acid

Increase zonal coverage in carbonate reservoirs.
Technology Innovations
Degradable Diversion Acid

Incorporate dissolvable fiber and nondamaging acid in a single-step, self-diverting stimulation system, using MaxCO3 Acid.

Scale Control Services

Remove and prevent scale within wellbores and the reservoir.

Deep-Penetrating, High-Temperature Acid

Improve Your Reservoir Acidizing and Acid Fracturing Treatments

SuperX emulsion fluid for high temperatures improves your reservoir acidizing and acid fracturing treatments in high-temperature reservoirs. SuperX fluid is a viscous, highly retarded HCl system designed to overcome acid penetration problems in stimulating reservoirs above 250 degF [121 degC].

Standard hydrochloric acid reacts very quickly in carbonate formations. The reaction is so rapid in high temperatures that it is impossible for acid to penetrate, or wormhole, more than a few inches into the formation. In such cases, the acid is rendered ineffective in stimulating the well. Deep, live-acid penetration can be achieved if the acid reaction rate is retarded — a feat accomplished with SuperX emulsion high-temperature system. This oil-external emulsion is formed with a 70:30 HCl-to-oil ratio, stabilized with an emulsifier. HCl concentrations ranging from 7.5 to 28% may be used in either a batch or continuous mix system.

Reaction retardation

SuperX high-temperature emulsion is significantly retarded with respect to HCl. The retardation depends on temperature, acid concentration, flow regime (laminar, transitional or turbulent) and type of rock (dolomite or limestone). Between 250 degF and 350 degF [121 degC and 177 degC] the HCl-limestone and the HCl-dolomite reactions are mass-transfer controlled.

Emulsion stability

The stability of SuperX fluid is temperature dependent. Quality of oil phase and mixing time also affect the emulsion stability.

Viscoelastic Diverting Acid

Damage-free carbonate stimulation

VDA viscoelastic diverting acid, a self-diverting, polymer-free acidizing fluid, can be used alone or with other treating acids for total zonal coverage in carbonate reservoirs. It viscosifies as it stimulates in carbonate formations, diverting the remaining acid treatment fluid into zones of lower injectivity for

  • improved zonal coverage across long intervals and high permeability contrasts
  • extremely efficient wormholing behavior in a wide range of conditions
  • significantly better leakoff control than straight hydrochloric and noncrosslinked gelled acid
  • high fluid efficiency during acid fracturing treatments
  • simple mixing for a smaller equipment footprint

VES fluid technology for total zonal coverage

Diverters can cause formation damage in carbonate formations. VES viscoelastic polymer-free surfactant does not damage the formation and can be bullheaded. It is self-diverting without incurring residual damage.

Enhanced, drag-reducing properties significantly lower friction pressure to reduce pumping requirements and treat deeper zones. VES-based fluids include VDA viscoelastic diverting acid, ClearFRAC polymer-free hydraulic fracturing fluid, and ClearPAC fluid system for gravel packing.

Ideal consistency


The fluid rapidly develops viscosity in situ upon acid spending and becomes self-diverting. The viscosity reduces dominating wormholes and allows the fluid to stimulate other zones.

Reduced cleanup costs

Recovery and well cleanup are easy after treatment. The barrier is broken down by production or dilution with formation fluids. Only low pressures are required for a smoother process.

Degradable Diversion Acid

MaxCO3 Acid degradable diversion acid is an effective single-step, self-diverting stimulation system that incorporates dissolvable fiber and nondamaging acid. The hydrochloric acid (HCl)-based system offers stimulation and then flow restriction for diversion. The interlocking fiber network blocks fluid during the stimulation job, yet dissolves completely with time, allowing poststimulated production contribution from diverted areas. Able to be bullheaded or deployed with coiled tubing (CT), the MaxCO3 Acid system can be used in openhole or cased hole completions for many applications.

The MaxCO3 Acid system is part of the Schlumberger carbonate stimulation offering, which includes the Contact family of stage fracturing and completion services for efficiently maximizing reservoir contact, Deep-Penetrating, High-Temperature Acid for overcoming acidizing challenges above 250 degF, and Viscoelastic Diverting Acid for increasing zonal coverage.
Damage-prone formation in North Dakota

To stimulate a 4,800-ft lateral in the Bluell formation (prone to damage from drilling mud leakoff), the MaxCO3 Acid system was implemented for superior diversion. It improved leakoff control such that after-treatment production increased 500%—to more than 300 bbl/d from just 50.
Thick carbonate in Qatar

Uniformly stimulating the thick, heterogenic Khuff formation proved challenging for an operator. The company used MaxCO3 Acid degradable diversion for 11 treatments in the North field and consistently stimulated each zone. Treatment volumes were reduced by up to 50%, and rig and operational time were reduced by 30%.
Naturally fractured carbonate in the Caspian region

The MaxCO3 Acid system was used to optimize stimulation for a horizontal openhole lateral. The technique created and diverted multiple fractures and controlled fluid loss, resulting in a production increase twice what the operator anticipated.

Degradable Diversion Acid

MaxCO3 Acid degradable diversion acid is an effective single-step, self-diverting stimulation system that incorporates dissolvable fiber and nondamaging acid. The hydrochloric acid (HCl)-based system offers stimulation and then flow restriction for diversion. The interlocking fiber network blocks fluid during the stimulation job, yet dissolves completely with time, allowing poststimulated production contribution from diverted areas. Able to be bullheaded or deployed with coiled tubing (CT), the MaxCO3 Acid system can be used in openhole or cased hole completions for many applications.

The MaxCO3 Acid system is part of the Schlumberger carbonate stimulation offering, which includes the Contact family of stage fracturing and completion services for efficiently maximizing reservoir contact, Deep-Penetrating, High-Temperature Acid for overcoming acidizing challenges above 250 degF, and Viscoelastic Diverting Acid for increasing zonal coverage.
Damage-prone formation in North Dakota

To stimulate a 4,800-ft lateral in the Bluell formation (prone to damage from drilling mud leakoff), the MaxCO3 Acid system was implemented for superior diversion. It improved leakoff control such that after-treatment production increased 500%—to more than 300 bbl/d from just 50.
Thick carbonate in Qatar

Uniformly stimulating the thick, heterogenic Khuff formation proved challenging for an operator. The company used MaxCO3 Acid degradable diversion for 11 treatments in the North field and consistently stimulated each zone. Treatment volumes were reduced by up to 50%, and rig and operational time were reduced by 30%
Naturally fractured carbonate in the Caspian region

The MaxCO3 Acid system was used to optimize stimulation for a horizontal openhole lateral. The technique created and diverted multiple fractures and controlled fluid loss, resulting in a production increase twice what the operator anticipated.

Scale Control
Remove and Control Scale Buildup

Scale control challenges are the leading cause of declining production worldwide. They cost the petroleum industry millions of dollars each year in scale control and removal costs and in deferred production. Scale control through chemical inhibition is preferred for maintaining well productivity, but when scale forms on the wellbore, more advanced scale control techniques must be applied.

Schlumberger scale control services are not only effective at removing scale and preventing repricipitation, they are quick and nondamaging to the wellbore, tubing, or formation environment.
Jet Blaster Scale Removal

Jetting scale removal service for effective one-trip wellbore cleaning.
ScaleFRAC Scale Inhibitor

Scale inhibitor service that protects wellbores and propped fractures from scale damage and related production declines.
ScaleMAT Acid-Compatible Scale Inhibitor

Acid-compatible scale inhibitor that enables scale inhibition at the same time as matrix stimulation.
ScalePROP Scale Inhibitor Proppant

Scale-inhibitor-impregnated proppant for long-term protection for fracturing proppant packs.
ScaleSOLV Carbonate Scale Dissolver

Carbonate scale dissolver to remove scale chemically without corrosion.