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Paradigm.Sysdrill.v2009

Size:

134M

Language: English
Protection: Flexlm
       Date: 2009.11.18
Software Type: Chemical
Platform:

 Win

Release Type:  
Introduce   URL: http://www.pdgm.com/

Paradigm™ Sysdrill® is designed to reduce drilling risk and cost by enabling the drilling engineer to model every phase of well bore construction within a single application. The high level of engineering analysis available in Sysdrill enables users to identify and eliminate potential design problems with flexibility and accuracy.

The Sysdrill application suite includes well planning, survey management, anti-collision, torque and drag, hydraulics, casing design, cementing, and well control in a single integrated package

Improve well planning accuracy
  • Target selection from seismic, reservoir, and log data for reduced well planning cycle times, improved wellbore placement, and reduced drilling risk
  • Geometric and engineering constrained well planning to ensure wellbore drillability
  • Positional uncertainty modeling to allow target sizing and survey tool program design
Improve drilling safety
  • Survey management and anti-collision analysis minimize the possibility of collision
  • Project-ahead-during-drilling and sidetracking help to determine how best to drill ahead and optimize wellbore positioning within the reservoir
  • Casing and mud design to ensure wellbore hydraulic integrity
Reduce drilling risk
  • BHA (bottom hole assembly) design to allow wellbore drillability
  • Fatigue analysis enables prediction and avoidance of mechanical failure of the drill string
  • Pressure data extractions along the wellbore to allow for avoidance of pressure hazards, improved casing seat placement, and optimized hydraulic design

    he Paradigm Sysdrill Casing Design system allows the drilling engineer to safely design the minimum number of casing strings required to safely complete a well, which can reduce well capital costs.
    Casing setting depths can be automatically calculated based on pressure data and user-defined constraints such as trip margin, kick tolerance, and maximum open hole distance.
    Users can specify fully customizable design load cases according to company policy and store them in catalogs for future use.The analysis offers half biaxial, full biaxial and tri-axial stress checks for axial, burst, and collapse failure modes for multiple grades of casing.
    A single graphical analysis showing design factor against safety factor for all design stages (installation, drilling, and production) enables quick identification of problematic loading conditions.

    You can import a temperature profile to derate casing yield and calculate thermal expansion effects for the most accurate analysis.

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