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65 Years of Fracturing Experience: The Key To Better Productivity Is Not What We Have Learned But What We Have Forgotten and Failed To Utilize! (SPE 166107)

This paper will challenge the industry notion that infinitely conductive fractures are being placed in many unconventional completions. It further addresses the critical fracturing parameters required to achieve a high conductivity fracture, why they are important, and how to achieve proper proppant and fluid treatment designs.

Safety data sheet
Evaluating the Long Term Benefits of Improved Fracture Treatments (SPE 147436)

It is understood that improved hydraulic fracture treatments increase production rates from most reservoirs. However, are these gains short lived, or do they yield incremental recovery? Is the improved productivity related to recovery of additional reserves or merely an acceleration of existing reserves?

Technical paper
Field Study Compares Fracture Diagnostic Technologies (SPE 152169)

Traditional proppant placement evaluation in hydraulically induced fractures utilize detection of radioactive (R/A) tracers such as iridium 192, scandium 46 and antimony 124, which are manufactured in nuclear reactors, and then shipped to the wellsite and pumped downhole with the frac slurry.

Technical paper
Fracture technologies brochure

Build higher production and EUR into every fracture We help build fractures using high-quality, high-performance proppant for increased contact, higher conductivity and greater hydrocarbon flow. Our proprietary proppant-delivered production enhancement technologies and services also help assure production, further enhanceflow and evaluate fractures to inform field development.

Brochure
Production enhancement brochure

Higher production. Increased recovery. As an industry-leading production enhancement company, CARBO integrates unique technologies and intellectual capital to deliver higher production and increased EUR from every fracture, helping clients to design, build and optimize the frac.

Brochure
Effective Scale Prevention Using Chemically Infused Proppant - A Uinta Basin Case History (SPE 173792)

Scale deposition down hole is a well-known and common production problem throughout the industry. Successful treatment of scale where it is first deposited near wellbore can be challenging in many cases, and sometimes impossible in others.

Technical paper
Inert tracer signals validate refracturing efficacy

Non-radioactive CARBONRT ULTRA provides fracture height insight to advance planned horizontal well development

Case history
CARBONRT technical data sheet

CARBONRT inert tracer technology enables the high definition evaluation of fractures in ceramic completed wells to help you optimize completion efficiency, production and field development.

Technical data sheet
CARBONRT ULTRA technical data sheet

CARBONRT ULTRA inert tracer technology has been developed to enable the cost-effective fracture evaluation of sand completed wells to help you optimize completion efficiency, production and field development.

Technical data sheet
RPM technical data sheet

RPM relative permeability modification technology is engineered to alter the wettability of proppant to neutral, preventing the retention of waterbased fluid in the proppant pack. RPM technology increases the effective fracture length, conductivity and permeability of the pack to hydrocarbons, leading to higher production and increased ultimate recovery.

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