Segmented Carbonate Rock - XRM

ZEISS Microscopy Solutions for Oil & Gas Research

Understanding reservoir behavior with pore scale analysis

The ZEISS portfolio of light, X-ray, electron and ion microscopes is uniquely capable of solving the multiscale and multi-physics challenges of reservoir rock, fusing, integrating and correlating data together and even observing reservoir processes directly in situ. This enables, for the first time, all pore scale information to be acquired based on macroscopic heterogeneity, and all the resulting insights to be directly and quantitatively upscaled to the core plug and whole core scales.
  

  • Core Analysis
  • Rock Characterization
  • Mineralogical Analysis
  • Downstream Materials Analysis

ZEISS Microscopy Solutions Brochure

  • Mineral Processing with 3D X-ray Microscopy

    Precious Metals, Base Metals, Industrial Metals, and Coal

    1 MB
  • ZEISS Microscopy Solutions for Oil & Gas

    Understanding reservoir behavior with pore scale analysis

    7 MB
  • ZEISS Solutions for Shale Characterization

    Pore Network Modeling of Marcellus Shale using Digital Rock Analysis with Machine Learning Image Segmentation

    1 MB


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  • ZEISS Microscopy Solutions for Oil & Gas

    ZEISS Microscopy Solutions for Oil & Gas

    Understanding reservoir behavior with pore scale analysis

    The flow of oil and gas through subsurface reservoirs is governed by the scale of the tiny, tortuous pathways in the rock through which flow occurs. While frequently the fundamental pore, grain and mineralogical structures can be understood at these tiny scales, this often comes at the expense of a field of view representative of real geological structures. These structures can exhibit heterogeneity ranging from the kilometer to the nanometer scales. The ZEISS portfolio of light, X-ray, electron and ion microscopes is uniquely capable of solving these multiscale and multi-physics challenges, fusing, integrating and correlating data together and even observing reservoir processes directly in situ. This enables, for the first time, all pore scale information to be acquired based on macroscopic heterogeneity, and all the resulting insights to be directly and quantitatively upscaled to the core plug and whole core scales.

  • Pore Network Modeling of Marcellus Shale

    Pore Network Modeling of Marcellus Shale

    Application Note

    This Application Note is about Pore Network Modeling of Marcellus Shale using Digital Rock Analysis with Machine Learning Image Segmentation

  • Application Note: A Revolution in Quantitative Petrography

    A Revolution in Quantitative Petrography

    Digitization and Automation with Machine Learning

    Learn  wow these techniques are integrated into ZEISS microscopy platforms, including the Axioscan 7 digitization platform