Showing posts with label Vehicle. Show all posts
Showing posts with label Vehicle. Show all posts

Computational Rigid Vehicle Dynamics

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Computational Rigid Vehicle Dynamics Overview


Computational Rigid Vehicle Dynamics is oriented toward computer simulation and applies rigorous and nonlinear dynamic equations, which current desktop computers can easily handle. This work bypasses the laborious process of linearization and the exhaustive analysis of linearized equations. Linearized analysis is used selectively to build insights and is checked against the full computer simulation. Here is a reference work for practitioners in flight simulation that can be a course text. It provides in-depth coverage of kinematics and dynamics of 6DOF, including some recently published material. The text covers the mathematics and physics of the subject and modeling. Coding issues are treated in appendixes.


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Railroad Vehicle Dynamics: A Computational Approach

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Railroad Vehicle Dynamics: A Computational Approach Overview


The methods of computational mechanics have been used extensively in modeling many physical systems. The use of multibody-system techniques, in particular, has been applied successfully in the study of various, fundamentally different applications.

Railroad Vehicle Dynamics: A Computational Approach presents a computational multibody-system approach that can be used to develop complex models of railroad vehicle systems. The book examines several computational multibody-system formulations and discusses their computer implementation. The computational algorithms based on these general formulations can be used to develop general- and special-purpose railroad vehicle computer programs for use in the analysis of railroad vehicle systems, including the study of derailment and accident scenarios, design issues, and performance evaluation.

The authors focus on the development of fully nonlinear formulations, supported by an explanation of the limitations of the linearized formulations that are frequently used in the analysis of railroad vehicle systems. The chapters of the book are organized to guide readers from basic concepts and definitions through a final understanding of the utility of fully nonlinear multibody- system formulations in the analysis of railroad vehicle systems.

Railroad Vehicle Dynamics: A Computational Approach is a valuable reference for researchers and practicing engineers who commonly use general-purpose, multibody-system computer programs in the analysis, design, and performance evaluation of railroad vehicle systems.


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*** Product Information and Prices Stored: Jan 21, 2011 19:30:08