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Simulation Techniques for Applied Dynamics
Details
The coupling of models from different physical domains and the efficient and reliable simulation of multidisciplinary problems in engineering applications are important topics for various fields of engineering, in simulation technology and in the development and analysis of numerical solvers.
The volume presents advanced modelling and simulation techniques for the dynamical analysis of coupled engineering systems consisting of mechanical, electrical, hydraulic and biological components as well as control devices often based on computer hardware and software. The book starts with some basics in multibody dynamics and in port-based modelling and focuses on the modelling and simulation of heterogeneous systems with special emphasis on robust and efficient numerical solution techniques and on a variety of applied problems including case studies of co-simulation in industrial applications, methods and problems of model based controller design and real-time application.
Autorentext
Martin Arnold is Professor für Altnordische Studien an der Universität Hull, Großbritanien und der Autor zahlreicher populärwissenschaftlicher Bücher.
Inhalt
Multibody Systems and Applied Dynamics.- Modelling, simulation and control of flexible multibody systems.- Modeling, simulation and control of mechatronical systems.- Port-based modelling of multidomain physical systems in terms of bond graphs.- Numerical methods for simulation in applied dynamics.- Real-Time Multibody Dynamics and Applications.- Advanced Applications.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783211895474
- Auflage 2009
- Editor Werner Schiehlen, Martin Arnold
- Sprache Englisch
- Genre Allgemeines & Lexika
- Lesemotiv Verstehen
- Größe H241mm x B160mm x T27mm
- Jahr 2009
- EAN 9783211895474
- Format Fester Einband
- ISBN 3211895477
- Veröffentlichung 12.01.2009
- Titel Simulation Techniques for Applied Dynamics
- Untertitel CISM International Centre for Mechanical Sciences 507
- Gewicht 740g
- Herausgeber Springer Vienna
- Anzahl Seiten 384