last modified: 27-APR-1997 | catalog | categories | new | search |

IAEA1324 VITEK.

VITEK, Non Stationary Navier-Stokes Solver for Compressible, Turbulent Flow

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1. NAME OR DESIGNATION OF PROGRAM:  VITEK.
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2. COMPUTERS
To submit a request, click below on the link of the version you wish to order. Only liaison officers are authorised to submit online requests. Rules for requesters are available here.
Program name Package id Status Status date
VITEK IAEA1324/01 Tested 27-APR-1997

Machines used:

Package ID Orig. computer Test computer
IAEA1324/01 PC-80486 PC Pentium 166
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3. DESCRIPTION OF PROGRAM OR FUNCTION

VITEK calculates the numerical  solutions of the nonstationary two-dimensional Navier-Stokes equation in reacting, compressible and turbulent (k-e model) flow in u-v-p variables. Analysis of laminar and turbulent fluid flow and heat transfer, combustion processes including detailed chemical reaction mechanisms and automatic programming of kinetical equations can be performed.
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4. METHOD OF SOLUTION

The program applies the finite difference methods with an iterative solution procedure.
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5. RESTRICTIONS ON THE COMPLEXITY OF THE PROBLEM:  The maximum number of grid is 100*100.
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6. TYPICAL RUNNING TIME:
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7. UNUSUAL FEATURES OF THE PROGRAM

VITEK uses advanced menu-driven pre- and post-processors with colour graphics support.
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8. RELATED AND AUXILIARY PROGRAMS:
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9. STATUS
Package ID Status date Status
IAEA1324/01 27-APR-1997 Tested at NEADB
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10. REFERENCES

1. Bulota A.Y., Sidlauskas V.A., Vaitiekunas P.P., Dulinskas R.A. :     Simulation of Turbulent Flows in Arbitrary Locations //
    Institute for Physical and Engineering Problems of Energy
    Research, Kaunas, Lithuania, p. 15, - Dep. v LitNIINTI
    15.01.1985, No. 1347 - Li.
2. Sidlauskas V.A. and Tamonis  M.M.:
    Structure  and  Possibilities of Program Packet VITEK for
    Fluid - and Thermal Dynamics in Channel Flows
    Institute for  Physical  and  Engineering
    Problems  of  Energy Research,  Kaunas, Lithuania, p.19, -
    Dep. v LitNIINTI 11.09.86, No.1717 - Li.
3. Kveselis V.V., Sidlauskas V.A.,  Tamonis M.M.:
    Radiation Beween a Gaseous Stream and an Annular Channel
    International Chemical Engineering, vol. 27, pp. 162-167
    No. 1, 1987.
4. Sidlauskas V.A., Tamonis  M.M.:
    Numerical Modeling of Heat Transfer in Combustion Chambers
    Institute  for  Physical and  Engineering Problems of
    Energy Research,  Kaunas, Lithuania, p.19,
    Dep. v LitNIINTI 06.10.88, No.2209 - Li.
5. Sidlauskas V., Bajarunas E., Tamonis M., Yanovsky,
    L. Impulse:
    Heat and Mass Transfer in  Channels  with  Variable  Section
    (4. Numerical Modeling of  Heat  and  Mass Transfer Compound
    Processes in Channels)
    Trudy Akademii Nauk Litovskoy SSR.
    Ser. B, vol. 6(175), pp.99-107, 1989.
IAEA1324/01, included references:
- V. Shidlauskas:
  Program Code VITEK
  The Solution of Two-Dimensional Time Dependent Navier-Stokes
  Equations
  Users Guide
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11. MACHINE REQUIREMENTS

VITEK is operable on IBM PC 80286 or higher,  and can run in "real" and "protected" mode. Math co-processor and 5
MB of disk space are required.
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12. PROGRAMMING LANGUAGE(S) USED
Package ID Computer language
IAEA1324/01 PASCAL+ASSEMBLER
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13. OPERATING SYSTEM UNDER WHICH PROGRAM IS EXECUTED

MS-DOS V6.0 Borland Pascal Version 7.0 compiler was used for the PC compilation.
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14. OTHER PROGRAMMING OR OPERATING INFORMATION OR RESTRICTIONS:
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15. NAME AND ESTABLISHMENT OF AUTHORS

     Vladas Shidlauskas
     Lithuanian Energy Institute
     Breslaujos 3, 3035 Kaunas
     Lithuania
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16. MATERIAL AVAILABLE
IAEA1324/01
miscellaneous    mag tapeVIABS.DOC VITEK's abstract                 MISTP
miscellaneous    mag tapeEXAMPLES.ARJ Examples of solution (archive)MISTP
miscellaneous    mag tapeVITEK.ARJ Archive file                     MISTP
miscellaneous    mag tapeVITKIN.ARJ Archive file                    MISTP
miscellaneous    mag tapePRFKIF.ARJ Archive file                    MISTP
report                   Users Guide                                REPPT
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17. CATEGORIES
  • H. Heat Transfer and Fluid Flow

Keywords: combustion kinetics, fluid flow, mass transfer, turbulent flow.