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Vibration of Mindlin plates : programming the p-version Ritz Method /

Over the last several years, the four authors have jointly conducted research into the analysis of vibrating Mindlin plates as a collaborative project between Nanyang Technological University, The National University of Singapore, and The University of Queensland. The research was prompted by the fa...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Otros Autores: Liew, K. M.
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Amsterdam ; New York : Elsevier, 1998.
Edición:1st ed.
Temas:
Acceso en línea:Texto completo
Descripción
Sumario:Over the last several years, the four authors have jointly conducted research into the analysis of vibrating Mindlin plates as a collaborative project between Nanyang Technological University, The National University of Singapore, and The University of Queensland. The research was prompted by the fact that there is a dearth of vibration results for Mindlin plates when compared to classical thin plate solutions. To generate the vibration results, the authors have successfully employed the Ritz method for general plate shapes and boundary conditions. The Ritz method, once thought to be awkward for general plate analysis, can be automated through suitable trial functions (for displacements) that satisfy the geometric plate boundary conditions <IT>a priori</IT>. This work has been well-received by academics and researchers, as indicated by the continual requests for the authors' papers and the Ritz software codes. This monograph is written with the view to share this so-called <IT>p</IT>-Ritz method for the vibration analysis of Mindlin plates and its software codes with the research community. To the authors' knowledge, the monograph contains the first published Ritz plate software codes of its kind.
Descripción Física:1 online resource (x, 202 pages) : illustrations
Bibliografía:Includes bibliographical references (pages 183-189) and index.
ISBN:9780080433417
0080433413
9780080543543
0080543545
1281026875
9781281026873