4.7 Article

A method for generating volumetric fault zone grids for pillar gridded reservoir models

Journal

COMPUTERS & GEOSCIENCES
Volume 81, Issue -, Pages 28-37

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.cageo.2015.04.009

Keywords

3D fault zone grid; Explicit fault zone modeling; Fault zone properties; Fault facies

Funding

  1. MatMoRA (Mathematical and Risk Assessment) Project (Norwegian Research Council) [178013]
  2. SUCCESS (Subsurface CO2 Elements and Superior Strategy) Project (Norwegian Research Council) [193825]
  3. SEISBARS (Seismic Expression of Fault and Fracture Zones in Barents Sea Petroleum Reservoirs) Project (Norwegian Research Council) [233646]
  4. China Scholarship Council

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The internal structure and petrophysical property distribution of fault zones are commonly exceedingly complex compared to the surrounding host rock from which they are derived. This in turn produces highly complex fluid flow patterns which affect petroleum migration and trapping as well as reservoir behavior during production and injection. Detailed rendering and forecasting of fluid flow inside fault zones require high-resolution, explicit models of fault zone structure and properties. A fundamental requirement for achieving this is the ability to create volumetric grids in which modeling of fault zone structures and properties can be performed. Answering this need, a method for generating volumetric fault zone grids which can be seamlessly integrated into existing standard reservoir modeling tools is presented. The algorithm has been tested on a wide range of fault configurations of varying complexity, providing flexible modeling grids which in turn can be populated with fault zone structures and properties. (C) 2015 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY-NC-ND license (http://creativecommons.orgilicenses/by-nc-nd/4.0/).

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