Multibody Dynamics Computational Methods and Applications /

By having its origin in analytical and continuum mechanics, as well as in computer science and applied mathematics, multibody dynamics provides a basis for analysis and virtual prototyping of innovative applications in many fields of contemporary engineering. With the utilization of computational mo...

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Detalles Bibliográficos
Otros Autores: Terze, Zdravko (ed.)
Formato: Libro electrónico
Lenguaje:Inglés
Publicado: Cham : Springer International Publishing : Imprint: Springer, 2014.
Colección:Computational Methods in Applied Sciences, 35
Materias:
Acceso en línea:http://dx.doi.org/10.1007/978-3-319-07260-9
Aporte de:Registro referencial: Solicitar el recurso aquí
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505 0 |a Preface -- Sensitivity analysis of multibody dynamic systems modeled by ODEs and DAEs, by Daniel Dopico, Adrian Sandu, Corina Sandu, Yitao Zhu -- A Lagrangian-Lagrangian framework for the simulation of rigid and deformable bodies in fluid, by Arman Pazouki, Radu Serban, and Dan Negrut -- Strategies for Adaptive Model Reduction with DCA-based Multibody Modeling of Biopolymers, by Jeremy J. Laflin, Kurt S. Anderson and Imad M. Khan -- A mortar method combined with an augmented Lagrangian approach for treatment of mechanical contact problems, by Federico J. Cavalieri, Olivier Brüls and Alberto Cardona -- Contact Dynamics Formulation Using Minimal Coordinates, by Abhinandan Jain -- Modelling and Integration Concepts of MultiBody Systems on Lie groups, by Andreas Müller, Zdravko Terze -- Solvability of Geometric Integrators for Multi-body Systems, by Marin Kobilarov -- Variational Lie group formulation of geometrically exact beam dynamics - synchronous and asynchronous integration, by Thomas Leitz, Sina Ober-Blöbaum and Sigrid Leyendecker -- On the Use of Geometrically Exact Shells for Dynamic Tire Simulation, by Michael Roller, Peter Betsch, Axel Gallrein, and Joachim Linn -- Application of a gyrostatic rigid body formulation in the context of a direct transcription method for optimal control in multibody dynamics, by Christian Becker, Peter Betsch -- Development of Tether Space Mobility Device, by Shoichiro Takehara, Takahiro Nishizawa, Masaya Kawarada, Kazunori Hase, Yoshiaki Terumichi -- Design methodology of a complex CKC mechanical joint with a representation energetic tool â_omultibond graphâ__: application to the helicopter, by Benjamin Boudon, François Malburet, Jean-Claude Carmona -- Comparison and Field Test Validation of Various Multibody Codes for Wind Turbine Modelling, by János Zierath, Roman Rachholz, and Christoph Woernle -- A Real-time Multibody Dynamics Model for an Unmanned Robot Vehicle Based on the Subsystem Synthesis Method, by Myoung-Ho Kim, Hee Chan Kang, Sung-Soo Kim -- History of Benchmark Problems in Multibody Dynamics, by Werner Schiehlen. 
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650 0 |a Control engineering.  |9 259595 
650 0 |a Robotics.  |9 259596 
650 0 |a Mechatronics.  |9 259597 
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