Baker Hughes JewelSuite GeoMechanics 2017.2.584

From 1D well-centric models to static full-field 3D models, the JewelSuite Geomechanics application gives you greater insight into geomechanical risks to prevent nonproductive time and optimize the performance of your wells and reservoirs. Create powerful models to accurately assess geomechanical risks for better well plans. Define a safe operating window to maximize drilling performance. Minimize drilling risk, all while improving safety. JewelSuite Geomechanics helps you determine proximity to a critical or failure state using stress, pore pressure, and rock mechanical properties on faults and fractures of varying geometry and orientation. The modular design of JewelSuite Geomechanics offers the flexibility to use the modules as standalone tools or in combination for an advanced, integrated geomechanical workflow. More than 35 percent of nonproductive time is caused by geomechanics-related events. JewelSuite Geomechanics creates unified and consistent geomechanical models to minimize uncertainty in your data, maximize confidence in your modeling results, and provide a more complete and precise picture of the earth's subsurface. If you’re not drilling in the reservoir’s most productive zones, you are compromising on recovery. Trouble predicting pressure and wellbore stability could also limit production. Get the answers you need before and during drilling to lower operational risks and place wells in the zones with greatest potential.

  • Identify risks: Track geomechanical and drilling risks along with geologic hazards.
  • Mitigate control issues: Prevent abnormal pressure-related well control issues and proactively define safe operating windows to reduce pressure-related nonproductive time.
  • Improve assessments: Perform uncertainty assessments to identify highest risk scenarios.

Details

Software Title Baker Hughes JewelSuite GeoMechanics 2017.2.584
Size  589 MB
Download Method Direct Download  
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source https://www.civilax.com/baker-hughes-jewelsuite-geomechanics-2017-2-584/