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Software For Risk Analysis And Planning In Petrochemicals

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Product Category :    Software

Supplier                :    Transoft International (P) Ltd.

Key Features of Software For Risk Analysis And Planning In Petrochemicals

  • Exact simulation of flow in the refinery is simulated with the 3D finite volume approach. Automatic mesh generator is used to generate the mesh over the refinery area.
  • The equations are discredited both in three dimensional space and time.
  • The spatial discretization is done over a three dimensional mesh made up of arbitrary hexahedrons.


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Product Profile of Software For Risk Analysis And Planning In Petrochemicals

Transoft International [P] Ltd offers Software for Risk Analysis and Planning in Petrochemicals. Transoft International [P] Ltd supplies a wide range of computational software products for applications in various industries like chemical, petroleum, aerospace, automobile etc. The Software for Risk Analysis and Planning in Petrochemicals is designed for Analysis of chemicals, Petrochemical Refineries and Bulk storage Installations.Ÿ

Key Features of Software For Risk Analysis And Planning In Petrochemicals
  • Exact simulation of flow in the refinery is simulated with the 3D finite volume approach. Automatic mesh generator is used to generate the mesh over the refinery area.
  • The equations are discredited both in three dimensional space and time.
  • The spatial discretization is done over a three dimensional mesh made up of arbitrary hexahedrons.
  • Control-volume or integral-balance approach is used to construct the finite difference approximations for each of these control volumes
  • 45 possible scenarios: tank fire, explosion with blast and fire ball effect, BLEVE, UVCE, boil-over, pool fire etc.
  • Parameters considered : statutory thresholds, probability parameters, operational and meteorological data, site, fluid & equipment characteristics
  • Results presented as damage contours in graphics and tabular forms
  • Identification of the safety relevant sections of the establishment
  • Identification of critical systems at the origin of potential major accidents.
  • Determining the magnitude of potential major accidents.
  • Assignment and assessment of the prevention, control and mitigation measures.
  • The definitions of the emergency plan distances. [Evacuation of the population]
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