Introduction to bond graphs and their applications /
Introduction to Bond Graphs and Their Applications is an introductory text on bond graphs and their applications in the field of engineering. The applications of bond graphs in mechanical engineering and design, fluid mechanics, electronic data processing, and thermal and thermodynamic systems are d...
Clasificación: | Libro Electrónico |
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Autor principal: | |
Formato: | Electrónico eBook |
Idioma: | Inglés |
Publicado: |
Oxford ; New York :
1975.,
[1975]
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Edición: | 1st ed. |
Colección: | Pergamon international library of Science, technology, engineering and social studies
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Temas: | |
Acceso en línea: | Texto completo |
Tabla de Contenidos:
- Front Cover; Introduction to Bond Graphs and Their Applications; Copyright Page; Table of Contents; Preface; Introduction; Chapter 1. Diagrams, Models, and Simulation; 1.1. Graphs and Diagrams as Representations of Engineering Systems; 1.2. Models for Technical Systems; 1.3. Block Diagrams of Control Engineering and their Inversion; 1.4. Circuits and Equivalent Circuits; Chapter 2. Fundamentals of Bond Graphs; 2.1. Bond Graphs with Words for Components; 2.2. Standard Elements of Bond Graphs; 2.3. Augmentation of Bond Graphs; 2.4. Transformation and Simplification of Bond Graphs.
- 2.5. Additional TopicsChapter 3. Applications from Mechanical Engineering and Design; 3.1. Simple Installations; 3.2. Bond Graphs of Mechanical Drives; 3.3. Moving Reference Points and Planetary Gear-reducers; 3.4. Perturbations, Losses, and Efficiencies; 3.5. Couplings and Transmissions; Chapter 4. Fluid Mechanical Applications; 4.1. Hydrostatic Energy Transport; 4.2. Hydrostatic Bearings; 4.3. Hydrostatic Control Systems and Drives; 4.4. One-ports in Fluid Power Engineering; Chapter 5. Electronics and Electromechanical Power Conversion; 5.1. Electric Drive Motors.
- 5.2. Bond Graphs for Electric Circuits5.3. Electromechanical Signal Transducers; 5.4. Additional Observations on Energy-storingTransducers; Chapter 6. Thermal and Thermodynamic Systems; 6.1. Thermal Charge and Conversion Engines; 6.2. Matter as C-field; 6.3. Generation of Thermal Charge; 6.4. Thermal Energy Conduction and Convection; Chapter 7. Bond Graphs and Electronic Data Processing; 7.1. Fundamentals of Systems Simulation; 7.2. Manual Formulation of State Space Equations; 7.3. The ENPORT Program; Chapter 8. Selected Questions; 8.1. Inertia and Resistance Fields.
- 8.2. Linear Two-ports in Different Causalities8.3. Thermodynamics of Flow Processes; 8.4. Electromechanical Components; 8.5. Systems with Distributed Parameters; 8.6. Force and Velocity as Effort or Flow; Appendix: Short Table of the Most Important Symbols; Glossary of Frequent Terms in English, French, and German; References; Index.