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    Drilling Data Analytics Software for Performance Efficiency

    WellArchitect is an advanced software solution that facilitates integrated well planning and drilling of directional wellpaths, including sidetracking, multilaterals, and re-entry drilling.

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Drilling Data Analytics Software for Performance Efficiency

WellArchitect is an advanced software solution that facilitates integrated well planning and drilling of directional wellpaths, including sidetracking, multilaterals, and re-entry drilling. WellArchitect provides exceptional drilling data analytics software capabilities to give well planners and drilling engineers a detailed understanding of subsurface conditions to plan and drill wells that minimize risk and drilling costs while maximizing reservoir performance.

Well Planning Software Sets the Foundation for Performance Efficiency

Using powerful 3D visualization capabilities, well planners can explore the geology, formations, and petrophysical characteristics of a reservoir, locate targets, and evaluate the pros and cons of different well trajectories to maximize recovery. Flexible planning with multiple profile and curve-types available allow well planners to quickly and easily evaluate numerous possible trajectories from pad to target.

Planning a well into attic oil using geologic targets. Easy to evaluate the pros and cons in 3D with offset wells and a reservoir simulation grid.

A recommended wellpath can be annotated with information regarding rock properties, dogleg severity, casing and cementing guidance, or references to additional information to aid in the understanding of the plan and well drilling. Calculated ellipsoids of uncertainty can be used to “erode” a geologic target to create a “driller’s target,” indicating the likelihood of the wellpath being located within a target. Traveling cylinder diagrams, used to evaluate potential collisions with nearby planned or existing wellpaths, are interactive with the 3D visualization offering a better understanding of potential risks.

Drilling Data Analytics Software Facilitates Collaboration

Wellpaths designed with an understanding of subsurface conditions give drilling engineers detailed information to plan drilling activities. With this information, drilling engineers can assess borehole stability, identify any segments that present potential torque and drag problems, determine the casing strategy, calculate fluid weights, and specify required BHA components that maximize drilling performance. Working within the same 3D visualization environment, WellArchitect’s directional drilling software capabilities facilitate collaborative review, refinement, and agreement on drilling plans by planners and engineers.

Near-Real-Time Drilling Data Software

In addition to well planning, WellArchitect provides capabilities to monitor the progress of drilling activities. Working from a finalized well plan, drilling engineers can incorporate near-real-time data into a 3D visualization of the reservoir to monitor the drilling progress. WellArchitect can easily incorporate data obtained from a WITSML server, as well as instrumentation in observation wells, and present it in a 3D visualization.

Tracking where the well is within context of a geological model. Also displaying real-time drilling attribures like maximum torque and WOB (weight on bit).

With the combination of positional data and a 3D earth model, drilling engineers can:

A Wide Range of Positional Uncertainty Models

To aid in the accuracy of drilling wells, WellArchitect offers positional uncertainty models for more than 60 magnetic and gyro tools, including the ISCWSA-released models. Each tool type comes with at least one standard default model, and most have versions with various corrections ⁄ applications (e.g., with Sag correction or for a slant rig). Positional uncertainty is calculated based on standard ISCWSA methodology.

Using the tool positional uncertainty model, WellArchitect calculates the region (aka the ellipsoid of uncertainty) within which a given point may be located. These ellipsoids of uncertainty for each station or point within a wellpath can be displayed along the reference and offset wellpaths.

Ellipsoids of uncertainty calculated and displayed along the entire wellpath.

This information is also used to calculate clearance distances between wellpaths, as well as to shrink a geological target to a “driller’s target:“ the target volume that can be reached, given the uncertainty regarding the wellpath’s position.

Identify and Efficiently Resolve Drilling Challenges

WellArchitect accesses near-real-time drilling data and visualizes it to allow drilling engineers to gain better control over drilling operations and quickly make modifications whenever the actual deviates from the planned. If the current trajectory cannot achieve the build to land the target, analysis of the well trajectory in the context of local geology can help identify factors that led to the deviation. Visual analysis of conditions between current drill bit location and target helps engineers quickly determine appropriate methods to correct the trajectory.

When markers don’t come in where expected, the local earth model and well plan can easily be updated to more accurately reflect the strata depth, correctly locate BHA, and determine what modifications need to be made to the well plan to reach the target.

Gain Additional Insight Into The Impact of Drilling Activities

When data managed by WellArchitect are integrated with CoViz 4D, well planners and drilling engineers gain even greater insight into subsurface conditions that impact well planning, drilling, and performance. CoViz 4D is a powerful software tool enabling all members of a reservoir management team to view and interrogate a wide range of datasets (regardless of the software used to create and manage the data). CoViz 4D excels in integrating and visualizing reservoir data as it provides the unique ability to animate reservoir data over time (4D) to gain additional insight into how drilling activities have affected reservoir performance.

Using CoViz 4D and WellArchitect together, drilling engineers also benefit from easy access to drilling data obtained from existing wells. CoViz 4D maintains a complete record of well data, from initial planning through completion. Properties and metrics such as porosity, pore pressure, frac gradient, mud weight, weight on bit, and ROP can provide guidance regarding problems encountered and solutions employed during previous drilling operations.

CoViz 4D, a data visualization analytics software from Dynamic Graphics Inc., gives oil and gas professionals the ability to easily access and combine all relevant data associated with petroleum assets. WellArchitect, also from DGI, is an advanced well planning and survey management system for integrated planning and drilling of directional wellpaths with or without earth models. WellArchitect was developed to handle a range of applications, including single wellpath survey calculations, multi-well sites, multi-well planning, collision risk-analysis, and data management. To learn more about WellArchitect and CoViz 4D contact our team.

Copyright © 2015–2020 Dynamic Graphics, Inc. 1015 Atlantic Avenue, Alameda, CA 94501 USA. All Rights Reserved. The Dynamic Graphics logo; “;EarthVision”; and the EarthVision logo are registered trademarks of Dynamic Graphics, Inc. (Marca Registrada); the WorkFlow Manager logo, “;WellArchitect,”; and the WellArchitect logo, “;CoViz Wells,”;, “;CoViz,”; and the CoViz logo, and “;EVCELL”; are registered trademarks of Dynamic Graphics, Inc. or the subject of pending applications in various countries. “;Dynamic Graphics,”; “;WorkFlow Manager”; and “;Integrated Well Designer”; are trademarks of Dynamic Graphics, Inc. All other trademarks belong to their respective owners. Legal information available here.