Load-bearing capacity of plain concrete walls
Josef Hegger, Tobias Dreßen, Norbert Will
Abstract
Josef Hegger, Tobias Dreßen, Norbert Will
Abstract
Walls in housing are usually made of masonry or reinforced concrete. These wall constructions are both labour- and material-intensive and therefore more expensive than walls made of plain concrete. The high wall-thickness required by the design rules of BS 8110-1 and Eurocode 2 is the most important restraint for the use of plain concrete walls. The different design approaches are discussed and a new design method is explained in this paper. The proposed model allows for a simple, standardised and economic design of plain concrete walls with a thickness less than that of masonry walls. A further increase in load-bearing capacity can be achieved by taking into account the concrete tensile strength. A comparison with a test database verifies that all relevant aspects of the load-bearing capacity, for example slenderness, eccentricity and concrete strength, are represented appropriately by the developed design method. Moreover, the safety level of EN 1990 can be achieved.
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Walls in housing are usually made of masonry or reinforced concrete. These wall constructions are both labour- and material-intensive and therefore more expensive than walls made of plain concrete. The high wall-thickness required by the design rules of BS 8110-1 and Eurocode 2 is the most important restraint for the use of plain concrete walls. The different design approaches are discussed and a new design method is explained in this paper. The proposed model allows for a simple, standardised and economic design of plain concrete walls with a thickness less than that of masonry walls. A further increase in load-bearing capacity can be achieved by taking into account the concrete tensile strength. A comparison with a test database verifies that all relevant aspects of the load-bearing capacity, for example slenderness, eccentricity and concrete strength, are represented appropriately by the developed design method. Moreover, the safety level of EN 1990 can be achieved.
Key concepts: Structural engineering, Masonry, Load bearing, Bearing capacity, Ultimate tensile strength, Eurocode, Reinforced concrete, Geotechnical engineering