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Techniques for Distributed Access and Visualisation in Computational Mechanics

Lindemann, Jonas LU (2003)
Abstract
This work concern ideas and methods on how the context of computational mechanics can be improved for more efficient utilisation and extended into areas previously not familiar with or capable of using such tools. Three main areas were studied: Providing efficient and transparent access to finite element applications, development of methods for the visualisation of complex phenomena and improving the usability of the finite element method, partly in an educational context.
Abstract (Swedish)
Popular Abstract in Swedish

Denna avhandling berör metoder för hur beräkningsmekaniken kan förbättras med avseende på förbättrad och effektiv användning av verktyg och resurser. Den berör också ideér för hur verktyg i beräkningsmekanik skall kunna tillämpas i områden där dessa ej tidigare använts. Tre huvudområden har studerats: Effektiv och transparent tillgång till finita element applikationer, utveckling av metoder för visualisering av komplexa fenomen samt förbättring av användbarhet för finita element applikationer, speciellt i ett utbildnings perspektiv.
Please use this url to cite or link to this publication:
author
supervisor
opponent
  • Professor Langtangen, Hans Petter, Oslo, Norge
organization
publishing date
type
Thesis
publication status
published
subject
keywords
Byggnadsteknik, Building construction, finite element method, visualisation, computational mehcanics, distributed systems
pages
175 pages
publisher
Division of Structural Mechanics, P.O. Box 118, SE-221 00 Lund,
defense location
Room V:B, V-building, Lund Institute of Technology
defense date
2003-10-30 10:15:00
ISBN
91-628-5811-4
language
English
LU publication?
yes
additional info
Article: J.Lindemann, G. Sandberg and O. Dahlblom, An Approach For Distribution Of Resources In Structural Analysis Software, European Conference on Computational Mechanics - ECCM 99 Article: J.Lindemann, O. Dahlblom and G. Sandberg, Using CORBA Middleware in Finite Element Software, Future Generation Computer Systems, 2003, Accepted for publication Article: O. Dahlblom, J. Lindemann and S. Ormarsson, Software for Numerical Simulation of Drying Induced Deformation of Wooden Products, IUFRO Conference on Wood drying, 2003 Article: J.Lindemann, O. Dahlblom, Real-time Visualisation of Fibre Networks, The Visual Computer, 2002 Article: J. Lindemann, G. Sandberg, K. Olsson, An Approach to Teaching Architectural and Engineering Students Utilizing Computational Mechanics Software ForcePAD, Electronic Journal of Information Technology in special theme Construction on ICT Supported Learning in Architecture and Civil Engineering, 2003, The paper is accepted with minor revisions, not included in this version Article: J.Lindemann, O.Dahlblom and G. Sandberg, ObjectiveFrame - An Educational Tool for understanding the Behaviour of Structures, Applied Virtual Reality in Engineering & Construction Applications of Virtual Reality Current Initiatives and Future Challenges, AVR II and CONVR, 2001
id
9221182a-d36e-4a50-a19c-a76737750c32 (old id 466313)
date added to LUP
2016-04-04 11:27:10
date last changed
2018-11-21 21:04:56
@phdthesis{9221182a-d36e-4a50-a19c-a76737750c32,
  abstract     = {This work concern ideas and methods on how the context of computational mechanics can be improved for more efficient utilisation and extended into areas previously not familiar with or capable of using such tools. Three main areas were studied: Providing efficient and transparent access to finite element applications, development of methods for the visualisation of complex phenomena and improving the usability of the finite element method, partly in an educational context.},
  author       = {Lindemann, Jonas},
  isbn         = {91-628-5811-4},
  language     = {eng},
  publisher    = {Division of Structural Mechanics, P.O. Box 118, SE-221 00 Lund,},
  school       = {Lund University},
  title        = {Techniques for Distributed Access and Visualisation in Computational Mechanics},
  year         = {2003},
}