Corrugated Shell Displacements During the Passage of a Vehicle Along a Soil-Steel Structure

Author:

Machelski Czesław1,Mumot Marcin1

Affiliation:

1. Wrocław University of Science and Technology, Faculty of Civil Engineering, Poland

Abstract

Abstract Corrugated steel plates are highly rigid and as the constructions can be immersed in soil, they can be used as soil-steel structures. With an increase of cover depth, the effectiveness of operating loads decreases. A substantial reduction of the impacts of vehicles takes place as a road or rail surface with its substructure is crucial. The scope of load’s impact greatly exceeds the span L of a shell. This article presents the analysis of deformations of the upper part of a shell caused by a live load. One of the assumptions used in calculations performed in Plaxis software was the circle-shaped shell and the circumferential segment of the building structure in the 2D model. The influence lines of the components of vertical and horizontal displacements of points located at the highest place on the shell were used as a basis of analysis. These results are helpful in assessing the results of measurements carried out for the railway structure during the passage of two locomotives along the track. This type of load is characterized by a steady pressure onto wheels with a regular wheel base. The results of measurements confirmed the regularity of displacement changes during the passage of this load.

Publisher

Walter de Gruyter GmbH

Subject

Computers in Earth Sciences,Mechanics of Materials,Geotechnical Engineering and Engineering Geology,Civil and Structural Engineering

Reference12 articles.

1. [1] BĘBEN D., Experimental Study on the Dynamic Impacts of Service Train Loads on Corrugated Steel Plate Culvert, Journal Bridge Engineering, 2013, 18(4), 339-346.

2. [2] MACHELSKI C., Stiffeness of railway soil-steel structures, Studia Geotechnika et Mechanica, 2015, No. 4, 29-36.

3. [3] MACHELSKI C., Kinematic method for the determination of influence function of internal force in the steel shell of soil-steel structures, Studia Geotechnika et Mechanica, 2010, No. 3, 27-40.

4. [4] PEYMANN M., ANDERSON A., PETTERSSON L., KARUOMI R., Dynamic behavior of a short span soil-steel composite bridge for high-speed railways-field measurements and FE analysis, Engineering Structures, Stockholm 2007.

5. [5] SOBÓTKA C., Numerical simulation of hysteretic live load effect in soil-steel bridge, Studia Geotechnika et Mechanica, 2014, 36.1, 103-109.

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