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Halliburton Consulting Group has played key roles in the development of American shale in the Bakken, Eagle Ford, Monterrey, Marcellus, and in European, Australian, and global shales.

The strategic lessons learned and the technologies developed in these regions provides invaluable insights for the development of unconventional basins around the world.

Halliburton advises clients on the right technology for their plays, sharing our understanding of the differences between shales and what makes them productive, and helping operators manage lower-margin projects’ profitability.

Halliburton 4.3

Unconventionals

  • Complex team of geologists, geophysicists, petrophysicists and drilling and completions personnel that collaborates with client teams to maximize exploration efficiency.
  • Global, multi-lingual experts in Halliburton technologies for unconventional reservoirs.
  • Experienced shale project managers to drive efficiencies throughout development program execution.
  • Subject Matter Experts with 400+ years of aggregate industry experience transfer knowledge to client teams.
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Proven processes

Description 

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  • Proven exploration workflow to facilitate effective screening of potential shale opportunities and identification of "sweet spots" for pilot well drilling.
  • Systems to simulate reservoir behavior and predict production based on well architecture and fracturing treatment.
  • Full field development plans, factoring in surface restrictions and subsurface characteristics for maximum shale productivity.
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Leading technology

  • CYPHER℠ seismic-to-stimulation service encompasses key modules for unconventional field development, from basin modeling to production analysis and field optimization. At its center is a fast-loop, fully integrated, continuously refined Asset Model that integrates all reservoir properties to improve well placement, completion design, and well and field performance.
  • Access to state-of-the-art visualization facilities and computing capability to create collaborative working environments and potential for high-resolution reservoir modeling. WOrks
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