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Analytical solutions for Euler–Bernoulli beam on visco-elastic foundation subjected to moving load

✍ Scribed by Dipanjan Basu; N. S. V. Kameswara Rao


Publisher
John Wiley and Sons
Year
2012
Tongue
English
Weight
822 KB
Volume
37
Category
Article
ISSN
0363-9061

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✦ Synopsis


SUMMARY

Analytical solutions for the steady‐state response of an infinite beam resting on a visco‐elastic foundation and subjected to a concentrated load moving with a constant velocity are developed in this paper. The beam responses investigated are deflection, bending moment, shear force and contact pressure. The mechanical resistance of the foundation is modeled using two parameters k~s~ and t~s~ — k~s~ accounts for soil resistance due to compressive strains in the soil and t~s~ accounts for the resistance due to shear strains. Since this model represents the ground behavior more accurately than the Winkler spring model, the developed solutions produce beam responses that are closer to reality than those obtained using the existing solutions for Winkler model. The dynamic beam responses depend on the damping present in the system and on the velocity of the moving load. Based on the study, dynamic amplification curves are developed for beam deflection. Such amplification curves for deflection, bending moment, shear force and contact pressure can be developed for any beam‐foundation system and can be used in design. Copyright © 2012 John Wiley & Sons, Ltd.


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DYNAMIC ANALYSIS OF BEAMS ON AN ELASTIC
✍ D. Thambiratnam; Y. Zhuge 📂 Article 📅 1996 🏛 Elsevier Science 🌐 English ⚖ 310 KB

A simple procedure based on the finite element method has been developed for treating the dynamic analysis of beams on an elastic foundation subjected to moving point loads, where the foundation has been modelled by springs of variable stiffness. The effect of the speed of the moving load, the found