Theoretical Solution for Thick Plate Resting on Pasternak Foundation by Symplectic Geometry Method

Author:

Zhong Yang,Heng Liu1

Affiliation:

1. School of Civil and Hydraulic Engineering, Dalian University of Technology, Dalian 116024, China

Abstract

Based on the analogy of structural mechanics and optimal control, the theory of the Hamilton system can be applied in the analysis of problem solving using the theory of elasticity and in the solution of elliptic partial differential equations. With this technique, this paper derives the theoretical solution for a thick rectangular plate with four free edges supported on a Pasternak foundation by the variable separation method. In this method, the governing equation of the thick plate was first transformed into state equations in the Hamilton space. The theoretical solution of this problem was next obtained by applying the method of variable separation based on the Hamilton system. Compared with traditional theoretical solutions for rectangular plates, this method has the advantage of not having to assume the form of deflection functions in the solution process. Numerical examples are presented to verify the validity of the proposed solution method.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference13 articles.

1. Stresses in Concrete Pavements Computed by Theoretical Analysis;Public Roads,1926

2. CC Series Solution for Bending of Rectangular Plates on Elastic Foundation;Appl. Math. Mech.,1995

3. Thick Rectangular Plates With Four Free Edges on Elastic Foundation;Acta Mech. Solida Sin.,1986

4. The Solution of a Rectangular Thick Plate With Free Edges on a Pasternak Foundation;J. Tongji University,1989

5. Analysis of Concrete Pavements by Rectangular Thick-Plate Model;J. Transp. Eng.,1996

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