Verification of numerical models for pressure hull collapse predictions / by John R. MacKay. : D68-6/281-2011E-PDF

The verification aspects of a verification and validation (V&V) study for the numerical modeling of the collapse of pressure hulls are described. A series of finite element (FE) analyses were performed using ANSYS in order to verify that the numerical methodology was correctly implemented in the software (code verification) and that spatial and temporal refinement of validation FE models of test specimens were adequate (calculation verification). FE predictions of elastic and inelastic buckling pressures for 140 cylinders and ring-frames under external pressure were found to be within 8%, on average, of the benchmark analytical or numerical solutions. The FE error was attributed to unavoidable differences between the numerical and benchmark models, rather than problems with the FE software, so that code verification was considered to have been achieved. With calculation verification, the nonlinear FE solution was found to be most sensitive to the spatial refinement associated with the mesh density. Load increment size was found to affect the collapse prediction to a lesser extent, and the tolerance used to define convergence of the incremental solution did not affect the collapse prediction at all when a refined mesh and load increment were used.

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Renseignements sur la publication
Ministère/Organisme Canada. Defence R&D Canada.
Titre Verification of numerical models for pressure hull collapse predictions / by John R. MacKay.
Titre de la série Technical Memorandum ; 2011-281
Type de publication Série - Voir l'enregistrement principal
Langue [Anglais]
Format Électronique
Document électronique
Note(s) "November 2011."
Includes bibliographical references.
Information sur la publication [Ottawa] : Defence Research and Development Canada, c2011.
Auteur / Contributeur MacKay, John R.
Description viii, 28 p. : tables, figures.
Numéro de catalogue
  • D68-6/281-2011E-PDF
Descripteurs Technical reports
Pressure hull
Buckling
Collapse
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