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Lester C. Ward - One of the best experts on this subject based on the ideXlab platform.

  • Integrated computer aided reservoir Management (CARM) using Landmark`s OpenWorks 3 database and Reservoir Management Software
    AAPG Bulletin, 1995
    Co-Authors: Lester C. Ward
    Abstract:

    Multi-disciplinary asset teams in today`s oil industry are facing an information revolution. To assist them to more accurately define and develop known reservoirs, to visualise reservoirs in 3 dimensions, and to communicate more effectively, they require access to a single common dataset and a flexible, and comprehensive suite of reservoir description Software, that allows delineation and refinement of quantitative 3D reservoir models. Landmark`s Computer Aided Reservoir Management (CARM) Software provides the most complete integrated geo-information solution for data Management, and a suite of integrated Reservoir Management Software covering 3D & 2D seismic interpretation, 3D Geocellular modelling (Stratamodel), geological cross section building and deterministic and probabilistic petrophysical log analysis for 3D display. The OpenWorks 3 database provides a common framework not only for the integration of data between Landmark applications, but also with third party applications. Thus once the reservoir stratigraphic framework has been built in Stratamodel it can be used as direct input for stochastic modelling in Odin`s STORM, and also provide data direct to reservoir simulation applications. The key element to this integration is the OpenWorks 3 database which is a production oriented geo-science data model with over 500 tables and in excess of 2500 attributes. The OpenWorks 3more » Software permits seamless data transfer from one reservoir Management application to another, and at every stage of reservoir Management the latest updated interpretation is available to every team member. The goal of integrated reservoir Management, to achieve effective exploitation of reserves, now utilises multi disciplinary analysis by cross functional teams, enabling the industry to maximise return on {open_quotes}knowledge assets{close_quotes} and physical reserves.« less

Website Design - One of the best experts on this subject based on the ideXlab platform.

Agent Website Builder - One of the best experts on this subject based on the ideXlab platform.

Trawex Travel Website Designing - One of the best experts on this subject based on the ideXlab platform.

Yuxia Hou - One of the best experts on this subject based on the ideXlab platform.

  • the accuracy of orthodontic imaging Management Software in virtual simulating orthognathic surgery
    Chinese Journal of Orthodontics, 2018
    Co-Authors: Hu Qiao, Zhanping Ren, Tian Cao, Yongwei Tao, Hong Zhou, Yuxia Hou
    Abstract:

    Objective To evaluate the accuracy of surgical simulation in orthognathic surgery and find a reliable method for surgical simulation. Methods 12 patients undergoing combined orthodontic-orthognathic surgical treatment were selected. The CBCT data, scanned dental data and 3D facial photo were collected before surgery. The orthodontic-orthognathic surgery was simulated using orthodontic imaging Management Software (constructing 3D model, setting up coordinate system, defining osteotomy line, defining landmarks, 3D analysis and designing, 3D printing and et al.) The digital occlusal splint was completed and applied to orthognathic surgery. The skull base area was selected as the reference for superimposition of CBCT to verify the changes of the main landmarks in three dimensions. The preoperative and postoperative error of the main landmarks was calculated. Paired samples t test was used to verify the consistency between the simulation aided by the Software and the result of actual surgery. Results The 3D printed Occlusal splint designed using the Software was stable and accurate for occlusion and jaw location. The main landmarks (ANS, A, U1, PNS, L1, B, Pog, Me) showed no statistical difference between the preoperative predicted movements and actual operative movements after three dimensional superimposition (P>0.072). The errors on three dimensions were between 0.57 mm-1.53 mm. Conclusions Surgical simulation in orthognathic surgery designed using the orthodontic imaging Management Software was applicable and the 3D printed occlusalsplint was accurate enough for orthognathic surgery Key words: Orthodontic imaging Management Software; Orthodontics-orthognathic treatment; Occlusal splint