C. E. Inglis
A Mathematical Treatise on Vibrations in Railway Bridges
C. E. Inglis
A Mathematical Treatise on Vibrations in Railway Bridges
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Originally published in 1934, this book studies the dynamic effects in railway bridges, produced by the action of locomotives and other moving loads.
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Originally published in 1934, this book studies the dynamic effects in railway bridges, produced by the action of locomotives and other moving loads.
Produktdetails
- Produktdetails
- Verlag: Cambridge University Press
- Seitenzahl: 230
- Erscheinungstermin: 19. August 2015
- Englisch
- Abmessung: 254mm x 178mm x 13mm
- Gewicht: 442g
- ISBN-13: 9781107536524
- ISBN-10: 1107536529
- Artikelnr.: 43602368
- Verlag: Cambridge University Press
- Seitenzahl: 230
- Erscheinungstermin: 19. August 2015
- Englisch
- Abmessung: 254mm x 178mm x 13mm
- Gewicht: 442g
- ISBN-13: 9781107536524
- ISBN-10: 1107536529
- Artikelnr.: 43602368
Introduction
1. Deflections of beams obtained by methods of harmonic analysis
2. Natural frequencies and normal modes of vibration
3. Oscillations produced by stationary but alternating distributions of load
4. Oscillations produced by moving loads of constant magnitude
5. Oscillations produced by a moving alternating force
6. Oscillations produced by a moving alternating force, taking into account damping
7. Oscillations produced by a moving alternating force associated with a concentrated moving mass
8. Oscillations produced by a moving alternating force associated with a moving concentrated mass and damping influences
9. Oscillations taking into account the spring movement of a locomotive
10. Resistance to spring movement treated in accordance with the laws of solid friction
11. Vector methods for computing oscillations due to alternating forces
12. Oscillations in short-span bridges
13. Bridge and locomotive characteristics
14. Dynamic bending-moments and shearing-forces
Synopsis.
1. Deflections of beams obtained by methods of harmonic analysis
2. Natural frequencies and normal modes of vibration
3. Oscillations produced by stationary but alternating distributions of load
4. Oscillations produced by moving loads of constant magnitude
5. Oscillations produced by a moving alternating force
6. Oscillations produced by a moving alternating force, taking into account damping
7. Oscillations produced by a moving alternating force associated with a concentrated moving mass
8. Oscillations produced by a moving alternating force associated with a moving concentrated mass and damping influences
9. Oscillations taking into account the spring movement of a locomotive
10. Resistance to spring movement treated in accordance with the laws of solid friction
11. Vector methods for computing oscillations due to alternating forces
12. Oscillations in short-span bridges
13. Bridge and locomotive characteristics
14. Dynamic bending-moments and shearing-forces
Synopsis.
Introduction
1. Deflections of beams obtained by methods of harmonic analysis
2. Natural frequencies and normal modes of vibration
3. Oscillations produced by stationary but alternating distributions of load
4. Oscillations produced by moving loads of constant magnitude
5. Oscillations produced by a moving alternating force
6. Oscillations produced by a moving alternating force, taking into account damping
7. Oscillations produced by a moving alternating force associated with a concentrated moving mass
8. Oscillations produced by a moving alternating force associated with a moving concentrated mass and damping influences
9. Oscillations taking into account the spring movement of a locomotive
10. Resistance to spring movement treated in accordance with the laws of solid friction
11. Vector methods for computing oscillations due to alternating forces
12. Oscillations in short-span bridges
13. Bridge and locomotive characteristics
14. Dynamic bending-moments and shearing-forces
Synopsis.
1. Deflections of beams obtained by methods of harmonic analysis
2. Natural frequencies and normal modes of vibration
3. Oscillations produced by stationary but alternating distributions of load
4. Oscillations produced by moving loads of constant magnitude
5. Oscillations produced by a moving alternating force
6. Oscillations produced by a moving alternating force, taking into account damping
7. Oscillations produced by a moving alternating force associated with a concentrated moving mass
8. Oscillations produced by a moving alternating force associated with a moving concentrated mass and damping influences
9. Oscillations taking into account the spring movement of a locomotive
10. Resistance to spring movement treated in accordance with the laws of solid friction
11. Vector methods for computing oscillations due to alternating forces
12. Oscillations in short-span bridges
13. Bridge and locomotive characteristics
14. Dynamic bending-moments and shearing-forces
Synopsis.