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  4. A Simple, Closed-Form Method for Determining the Superelevation of Tall Reinforced Concrete Buildings
 
conference paper

A Simple, Closed-Form Method for Determining the Superelevation of Tall Reinforced Concrete Buildings

Ruggiero, David Michael Volpe  
•
Miglietta, Paola Costanza  
•
Boulanger, Benoit
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Ilki, Alper
•
Çavunt, Derya
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2023
Building for the Future: Durable, Sustainable, Resilient Proceedings of the fib Symposium 2023
fib Symposium 2023: Building for the Future: Durable, Sustainable, Resilient

The vertical shortening of tall buildings is not negligible, and it is important to account for these deformations to minimize differential movement and ensure that the finished building is level. Compensation via superelevation is common in reinforced concrete construction, but traditional methods of calculating these corrections require stepwise analysis accounting for construction sequence nonlinearity. In this paper, the shortening subsequent to storey construction is derived based upon the elastic displacement profile of the full structure. It is shown that the shortening prior to storey construction may be approximated as a parabola. Long-term volumetric effects may also be included using a strain multiplier approach. The simplified formulation is validated by comparison with detailed construction sequence finite element analyses for a sample column and a case-study wall, showing excellent agreement at a fraction of the computational cost. The proposed method therefore gives practicing engineers a conceptually simple but theoretically sound way to account for vertical shortening in tall reinforced concrete buildings.

  • Details
  • Metrics
Type
conference paper
DOI
10.1007/978-3-031-32511-3_104
Author(s)
Ruggiero, David Michael Volpe  
•
Miglietta, Paola Costanza  
•
Boulanger, Benoit
•
Kokai, Tibor
Editors
Ilki, Alper
•
Çavunt, Derya
•
Çavunt, Yavuz Selim
Date Issued

2023

Publisher

Springer

Published in
Building for the Future: Durable, Sustainable, Resilient Proceedings of the fib Symposium 2023
ISBN of the book

978-3-031-32511-3

Total of pages

10

Series title/Series vol.

Lecture Notes in Civil Engineering; 350

Volume

2

Start page

1018

End page

1027

Subjects

Axial shortening

•

Construction sequence

•

High-rise buildings

•

Long-term effects

•

Serviceability

•

Superelevation

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
CONSTRUCT  
Event nameEvent placeEvent date
fib Symposium 2023: Building for the Future: Durable, Sustainable, Resilient

Istanbul, Turkey

June 5-7, 2023

Available on Infoscience
July 5, 2023
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/198849
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