Second-order effects in horizontally loaded reinforced concrete columns

Author:

Pędziwiatr Janusz1,Musiał Michał1

Affiliation:

1. Wroclaw University of Science and Technology , Faculty of Civil Engineering

Abstract

Abstract This paper deals with the second-order effects in horizontally loaded reinforced concrete columns. The current standard approach according to Eurocode 2 is the starting point for the considerations. Simplified methods that take into account the secondary effects, that is, the nominal stiffness method and the nominal curvature method, and their limitations are discussed. Most attention is devoted to the general method. As only general guidelines for this method can be found in the literature on the subject, the author presents his own original approach to calculations done using this method. Exemplary analyses for the corbel columns of high bay racked warehouses are made. Columns of different lengths are analyzed. The calculations show the overestimates introduced by the simplified methods and the benefits stemming from the use of the general method, especially in the case of quite slender columns.

Publisher

Walter de Gruyter GmbH

Subject

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

Reference16 articles.

1. PN-B-03264. (2002). Plain, reinforced and prestressed concrete structures – Analysis and structural design. Polish standard.

2. EN 1992-1-1. (2004). Eurocode 2: Design of concrete structures – Part 1-1: General rules and rules for buildings.

3. Klempka, K., Knauff, M. (2005). Design of slender RC columns according to Eurocode and Polish Code compared with the improved numerical method. Archives of Civil Engineering, 51(1), 23–42.

4. Knauff, M. (2018). Calculating reinforced concrete structures according to Eurocode 2. Polish Scientific Publishers PWN. (In Polish)

5. Aristizabal-Ochoa, J.D. (2007). Large deflection and post buckling behavior of Timoshenko beam-columns with semi-rigid connection including shear and axial effects, Engineering Structures, 29(6), 991–1003. https://doi.org/10.1016/j.engstruct.2006.07.012

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