Nuclear Magnetic Resonance Logging Services

Superior technology focused on what’s inside your reservoir’s pore space

Maximize hydrocarbon recovery and reduce uncertainty with our magnetic resonance logging services. We can help you define what’s in your pore space with our magnetic resonance imaging logging technology. This provides the only matrix-independent method of measuring total porosity and partitioning total porosity into oil, gas, and water volumes for production.

Our portfolio of magnetic resonance technologies helps pinpoint the most profitable zones with ease, and is ideal for:

  • Identifying hydrocarbon-bearing zones
  • Defining movable and bound fluid volumes to capture reservoir quality
  • Capturing irreducible water saturation
  • Predicting permeability Defining fluids characterization
  • Identifying hydrocarbon fluid typing – oil, gas, and water
  • Providing pore-size classification
  • Integrating advanced interpretation with other sensors
MRIL®-XL Magnetic Resonance Imaging Logging Service
Our Magnetic Resonance Imaging Logging-XL (MRIL®-XL) service builds upon the highly successful MRIL technology to deliver the same high-quality nuclear magnetic resonance (NMR) measurements in a larger borehole range. The most complex and demanding wells now include boreholes of 12¼ to 15 in. Our MRIL-XL service will log wells up to 16 in. in diameter. Even more impressive, the tool’s slim profile also enables logging in wellbores as small as 7⅞ in.
MRIL®-Prime Magnetic Resonance Imaging Logging Service
With an extremely high signal-to-noise ratio, our Magnetic Resonance Imaging Logging-Prime (MRIL®-Prime) service is engineered to look 360 degrees around the borehole. Combining our nine measurement volumes with our advanced acquisition and signal processing methods, all nine measurements can operate continuously and independently. What that means for you—faster logging, no idle time, and all applications accomplished in a single pass.
MRIL®-WD™- Sensor
LWD tool provides a direct measurement of the reservoir's total porosity while drilling in hole sizes up to 10 5/8 inches.
Xaminer® Magnetic Resonance (XMR™) Service
The Halliburton Xaminer® MR (XMR™) service with its new-generation magnetic resonance (MR) wireline sensor provides full reservoir fluid characterization and formation evaluation.

Nuclear Magnetic Resonance Logging Services

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  TitleНазвание  DateДата
Summary Summary Perenco Uses New Workflow to Create Gains in Production and Locate New Zones Once Considered Uneconomical
Integrated Reservoir Evaluation Approach Combines MRIL® Service and RDT™ Tester
Summary Summary Finding Success on the Over-Mature Fringes of Organic Shale Plays
Halliburton Corevault® RFP System and XMR™ Serviceaccurately assessed the field's geologic trend forinformed field planning.
Summary Summary NMR Logging Principles & Applications - Russian Version
NMR logging represents a new revolution in formation evaluation with wireline logging, and this book gives a comprehensive treatment of this new technology. Since its acquisition of NUMAR in 1997, Halliburton has focused on advancing NMR techniques, and on integrating conventional log data with the NMR interpretation methodology to further enhance the NMR applications. Besides explaining basic NMR principles and applications, this book provides an understanding of the latest achievements in NMR logging.
Summary Summary NMR Logging Principles & Applications
NMR logging represents a new revolution in formation evaluation with wireline logging, and this book gives a comprehensive treatment of this new technology. Since its acquisition of NUMAR in 1997, Halliburton has focused on advancing NMR techniques, and on integrating conventional log data with the NMR interpretation methodology to further enhance the NMR applications. Besides explaining basic NMR principles and applications, this book provides an understanding of the latest achievements in NMR logging.
Summary Summary Xaminer® Magnetic Resonance (XMR™) Service
The Halliburton Xaminer® MR (XMR™) service is a true new-generation magnetic resonance technology, engineered to provide excellent bed resolution and evaluate your reservoir’s full range of pore sizes from micro to macro.
Summary Summary MRIL-XL™ Service Delivers Superior NMR Logging
The Halliburton DeepSuite™ MRIL®-XL and MRIL®-XL services provide nuclear magnetic resonance (NMR) fluid-filled porosity, which is mineralogy independent.
Summary Summary MRIL®-WD™- Sensor
LWD tool provides a direct measurement of the reservoir's total porosity while drilling in hole sizes up to 10 5/8 inches.
Summary Summary MRIL®-XL Magnetic Resonance Imaging Logging Service
Our Magnetic Resonance Imaging Logging-XL (MRIL®-XL) service builds upon the highly successful MRIL technology to deliver the same high-quality nuclear magnetic resonance (NMR) measurements in a larger borehole range. The most complex and demanding wells now include boreholes of 12¼ to 15 in. Our MRIL-XL service will log wells up to 16 in. in diameter. Even more impressive, the tool’s slim profile also enables logging in wellbores as small as 7⅞ in.
Summary Summary MRIL®-Prime Magnetic Resonance Imaging Logging Service
With an extremely high signal-to-noise ratio, our Magnetic Resonance Imaging Logging-Prime (MRIL®-Prime) service is engineered to look 360 degrees around the borehole. Combining our nine measurement volumes with our advanced acquisition and signal processing methods, all nine measurements can operate continuously and independently. What that means for you—faster logging, no idle time, and all applications accomplished in a single pass.
Summary Summary Xaminer® Magnetic Resonance (XMR™) Service
The Halliburton Xaminer® MR (XMR™) service with its new-generation magnetic resonance (MR) wireline sensor provides full reservoir fluid characterization and formation evaluation.
Summary Summary Nuclear Magnetic Resonance (NMR)
We can help you maximize hydrocarbon recovery and reduce uncertainty by defining what’s in your pore space with our magnetic resonance logging technology. This provides the only matrix-independent method of measuring total porosity and partitioning total porosity into oil, gas, and water volumes for production.
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