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The circular plates in the form of concrete or metal slabs are frequently placed on the foundation soil to support the structural loads in civil engineering applications. The analysis of circular plates for determining the deflection of the plates has been a challenging task for the engineers and research workers. For analysis purpose, the foundation soil can be represented by mechanical models such as Winkler model, Pasternak model or Kerr model. In the past the circular plates on the Winkler and Pasternak foundation models have been analyzed by many research workers using various analytical…mehr

Produktbeschreibung
The circular plates in the form of concrete or metal slabs are frequently placed on the foundation soil to support the structural loads in civil engineering applications. The analysis of circular plates for determining the deflection of the plates has been a challenging task for the engineers and research workers. For analysis purpose, the foundation soil can be represented by mechanical models such as Winkler model, Pasternak model or Kerr model. In the past the circular plates on the Winkler and Pasternak foundation models have been analyzed by many research workers using various analytical and numerical techniques. The analysis by strain energy approach has been used for the analysis of the circular plates resting on Winkler foundation but this approach has not been reported for the analysis of the circular plates resting on Pasternak foundation which is a two-parameter foundation model.The present effort is for the deflection of the thin circular plate resting on the Pasternak foundation model subjected to a concentrated load by strain energy approach.
Autorenporträt
Ashish Gupta obtained his MTech degree from IIT BHU, Varanasi, India. He has worked as a research scholar at Department of Civil Engineering, IIT, Delhi. Mr. Gupta is currently Assistant Professor at the Department of Civil Engineering of the BIET, Jhansi, U.P., India. His expertise is in the area of ground improvement, soil structure interaction.