Produktbild: Shabana, A: Railroad Vehicle Dynamics

Shabana, A: Railroad Vehicle Dynamics A Computational Approach

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Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

23.07.2007

Abbildungen

715 equations 23 Tables, black and white 117 Illustrations, black and white

Verlag

Taylor and Francis

Seitenzahl

360

Maße (L/B/H)

24.5/16.4/2.9 cm

Gewicht

657 g

Sprache

Englisch

ISBN

978-1-4200-4581-9

Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

23.07.2007

Abbildungen

715 equations 23 Tables, black and white 117 Illustrations, black and white

Verlag

Taylor and Francis

Seitenzahl

360

Maße (L/B/H)

24.5/16.4/2.9 cm

Gewicht

657 g

Sprache

Englisch

ISBN

978-1-4200-4581-9

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  • Produktbild: Shabana, A: Railroad Vehicle Dynamics
  • INTRODUCTION Railroad Vehicles and Multibody-System DynamicsConstrained Dynamics Geometry Problem Contact Theories General Multibody Railroad Vehicle Formulations Specialized Railroad Vehicle Formulations Linearized Railroad Vehicle Models Motion Stability Motion Scenarios DYNAMIC FORMULATIONSGeneral Displacement Rotation Matrix Velocities and Accelerations Newton-Euler Equations Joint Constraints Augmented Formulation Trajectory Coordinates Embedding Technique Interpretation of the Methods Virtual Work RAIL AND WHEEL GEOMETRY Theory of Curves Geometry of Surfaces Rail Geometry Definitions and Terminology Geometric Description of the Track Computer Implementation Track Preprocessor Wheel Geometry CONTACT AND CREEP-FORCE MODELS Hertz Theory Creep Phenomenon Wheel/Rail Contact ApproachesCreep-Force Theories MULTIBODY CONTACT FORMULATIONSParameterization of Wheel and Rail SurfacesConstraint Contact Formulations Augmented Constraint Contact Formulation (ACCF) Embedded Constraint Contact Formulation (ECCF) Elastic Contact Formulation-Algebraic Equations (ECF-A) Elastic Contact Formulation-Nodal Search (ECF-N) Comparison of Different Contact Formulations Planar Contact IMPLEMENTATION AND SPECIAL ELEMENTS General Multibody-System Algorithms Numerical Algorithms-Constraint Formulations Numerical Algorithms-Elastic Formulations Calculation of the Creep Forces Higher Derivatives and Smoothness Technique Track Preprocessor Deviations and Measured Data Special Elements Maglev Forces Static Analysis Numerical Comparative Study SPECIALIZED RAILROAD VEHICLE FORMULATIONS General Displacement Velocity and Acceleration Equations of Motion Trajectory Coordinate Constraints Single-Degree-of-Freedom Model Two-Degree-of-Freedom Model Linear Hunting Stability Analysis CREEPAGE LINEARIZATION Background Transformation and Angular Velocity Euler Angles Linearization AssumptionsLongitudinal and Lateral CreepagesSpin Creepage Newton-Euler Equations Concluding RemarksAPPENDIX A - Contact Equations APPENDIX B - Elliptical Integrals REFERENCESINDEX