last modified: 01-MAR-1974 | catalog | categories | new | search |

NEA-0408 EURCYL.

EURCYL, Mesh Generator for 3-D Intersections of Pressure Vessel Nozzles

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1. NAME OR DESIGNATION OF PROGRAM:  EURCYL.
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2. COMPUTERS
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Program name Package id Status Status date
EURCYL NEA-0408/01 Tested 01-MAR-1974

Machines used:

Package ID Orig. computer Test computer
NEA-0408/01 IBM 370 series IBM 370 series
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3. NATURE OF PHYSICAL PROBLEM SOLVED

EURCYL produces punched cards for topology and geometry of general 3-dimensional cylinder-cylinder intersections (with perpendicular axis), using linear, parabolic or  cubic iso-parametric finite elements. It is applied for pressure vessel nozzles with fillet radii.
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4. METHODS: METHOD OF SOLUTION
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5. RESTRICTIONS ON THE COMPLEXITY OF THE PROBLEM
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6. TYPICAL RUNNING TIME:  Two minutes.
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7. UNUSUAL FEATURES: UNUSUAL FEATURES OF THE PROGRAM
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8. RELATED AND AUXILIARY PROGRAMS:  BERSAFE, FLHE, STRUDL, ASKA, NASTRAN.
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9. STATUS
Package ID Status date Status
NEA-0408/01 01-MAR-1974 Tested at NEADB
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10. REFERENCES

- P. De Windt and J. Reynen:
  'EURCYL, A Computer Program to Generate Finite Element Meshes for Cylinder-Cylinder Intersections'
  Report EUR 5030 E (1973).
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11. MACHINE REQUIREMENTS:  250k bytes of main storage.
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12. PROGRAMMING LANGUAGE(S) USED
Package ID Computer language
NEA-0408/01 FORTRAN-IV
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13. SOFTWARE REQUIREMENTS: OPERATING SYSTEM OR MONITOR UNDER WHICH PROGRAM IS EXECUTED
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14. OTHER PROGRAMMING OR OPERATING INFORMATION OR RESTRICTIONS

ANY OTHER PROGRAMMING OR OPERATING INFORMATION OR RESTRICTIONS
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15. NAME AND ESTABLISHMENT OF AUTHOR

   P. De Windt and J. Reynen
   J.R.C. EURATOM
   Ispra Establishment, Italy.
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16. MATERIAL AVAILABLE
NEA-0408/01
File name File description Records
NEA0408_01.001 SOURCE PROGRAM (FORTRAN) 1264
NEA0408_01.002 SAMPLE PROBLEM 6
NEA0408_01.003 PUNCHED OUTPUT 175
NEA0408_01.004 OUTPUT LIST OF SAMPLE PROBLEM 410
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17. CATEGORIES
  • I. Deformation and Stress Distributions, Structural Analysis and Engineering Design Studies
  • L. Data Preparation

Keywords: cylinders, finite element method, mesh generation, pressure vessels, three-dimensional.