- 3D modeling and visualization of complex objects and systems.
- Algorithm support and software for increasing resource efficiency of technologies based on 3D modeling.
- Methodological aspects of teaching graphic disciplines and shaping engineering design competencies. Evaluation of efficiency.
Applied tasks - Developing 3D geological and hydrodynamic models of oil and gas fields.
- Development of design documentation during oil and gas field development design.
- Developing 3D models of complex objects.
- Three-dimensional visualization of technological processes.
- Modeling and animation of development dynamics of anthropogenic and natural phenomena and events.
- Creation of three-dimensional catalogs of goods and virtual tours.
- Interior and exterior design of buildings, automobiles, and other objects.
- Development of interactive simulators based on 3D models of objects and environment.
Intellectual property 9 certificates of copyright and database registration. Laboratory facilities - classrooms are equipped with multimedia devices, all classrooms are equipped with computers.
- Intel "Core 2 Duo E6850" workstations – 14 pcs.
- Xerox MFPs – 2 pcs.
- HP Designjet T1100 plotter – 1 pc.
- Proliant DL360R05 E5345 HPM server with 8 TB data storage capacity – 1 pc.
- Licensed 3D modeling software: AutoCAD
- Autodesk 3DS MAX
- Petrel PC (Schlumberger)
- Eclipse PC (Schlumberger)
- Irap RMS (Roxar)
- Surfer (GoldenSoftwareInc)
- MapInfo Professional (Pitney Bowes)
- Easy Trace (Easy Trace Group)
- ARCGIS (ARCGlobe, ARCScene, ARCMap) etc.
- Software and database development: Sybase Power Designer
- MS SQL-Server, Firebird
- IBExpert
- Borland Delphi, C++
- Adobe Flash
Tasks performed - Development of software tool suite for optimizing geological and hydrodynamic 3D modeling technology of oil and gas fields.
- Estimation of oil and gas reserves.
- Production testing projects.
- Initial field development plan.
- Feasibility study of investment.
- Feasibility study of hydrocarbon recovery factor.
- Study of applicability of hydrodynamic 3D model for modeling water and gas injection.
- Development of 3D model of a radioactive waste dumping polygon and element base of animated presentations of polygon condition monitoring results.
Head of research contact information Alena A. Zakharova, DSc Tel. +7 (3822) 460698 e-mail: zaa@tpu.ru
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