The effect of projected air temperatures on concrete box girders thermal gradients and effective temperatures in Canada

This study examines the impact of environmental thermal loads on the temperature behavior of bridges, focusing specifically on concrete box girders. Currently, the Canadian Highway Bridge Design Code (CHBDC) employs a single thermal gradient model for the entire country, which fails to account for t...

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Main Authors: Musab Nassar, Lamya Amleh
Format: Article
Language:English
Published: Elsevier 2023-12-01
Series:Results in Engineering
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2590123023005807
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author Musab Nassar
Lamya Amleh
author_facet Musab Nassar
Lamya Amleh
author_sort Musab Nassar
collection DOAJ
description This study examines the impact of environmental thermal loads on the temperature behavior of bridges, focusing specifically on concrete box girders. Currently, the Canadian Highway Bridge Design Code (CHBDC) employs a single thermal gradient model for the entire country, which fails to account for the differences in the geographical conditions in the Canadian climate regions. Accordingly, in some cases, the temperature distributions along the girder depth and their thermally induced responses might not be determined accurately. To address this issue, a transient FE thermal analysis was conducted to develop positive and negative thermal gradients and the maximum effective temperatures (METs) for concrete box girders under extreme thermal load conditions of the projected air temperature for the years 2050–2100 and the historical solar radiation. Different parametric studies were conducted to determine how the geometric parameters of box girders affect the temperature distribution and found that the girder depth is a critical factor. Based on the analysis, a formula is proposed to predict the MET for concrete box girders. In addition, different adjustments were recommended to consider the effect of girder depth on the thermal gradients and METs of the box girders.
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spelling doaj.art-d096f47ad8ae461291ba5e99fcf9e69e2023-12-20T07:35:46ZengElsevierResults in Engineering2590-12302023-12-0120101453The effect of projected air temperatures on concrete box girders thermal gradients and effective temperatures in CanadaMusab Nassar0Lamya Amleh1Corresponding author.; Civil Engineering Department, Toronto Metropolitan University, Toronto, CanadaCivil Engineering Department, Toronto Metropolitan University, Toronto, CanadaThis study examines the impact of environmental thermal loads on the temperature behavior of bridges, focusing specifically on concrete box girders. Currently, the Canadian Highway Bridge Design Code (CHBDC) employs a single thermal gradient model for the entire country, which fails to account for the differences in the geographical conditions in the Canadian climate regions. Accordingly, in some cases, the temperature distributions along the girder depth and their thermally induced responses might not be determined accurately. To address this issue, a transient FE thermal analysis was conducted to develop positive and negative thermal gradients and the maximum effective temperatures (METs) for concrete box girders under extreme thermal load conditions of the projected air temperature for the years 2050–2100 and the historical solar radiation. Different parametric studies were conducted to determine how the geometric parameters of box girders affect the temperature distribution and found that the girder depth is a critical factor. Based on the analysis, a formula is proposed to predict the MET for concrete box girders. In addition, different adjustments were recommended to consider the effect of girder depth on the thermal gradients and METs of the box girders.http://www.sciencedirect.com/science/article/pii/S2590123023005807Temperature distributionThermal gradientsFE thermal simulationMaximum effective temperaturesProjected air temperaturesConcrete box girder
spellingShingle Musab Nassar
Lamya Amleh
The effect of projected air temperatures on concrete box girders thermal gradients and effective temperatures in Canada
Results in Engineering
Temperature distribution
Thermal gradients
FE thermal simulation
Maximum effective temperatures
Projected air temperatures
Concrete box girder
title The effect of projected air temperatures on concrete box girders thermal gradients and effective temperatures in Canada
title_full The effect of projected air temperatures on concrete box girders thermal gradients and effective temperatures in Canada
title_fullStr The effect of projected air temperatures on concrete box girders thermal gradients and effective temperatures in Canada
title_full_unstemmed The effect of projected air temperatures on concrete box girders thermal gradients and effective temperatures in Canada
title_short The effect of projected air temperatures on concrete box girders thermal gradients and effective temperatures in Canada
title_sort effect of projected air temperatures on concrete box girders thermal gradients and effective temperatures in canada
topic Temperature distribution
Thermal gradients
FE thermal simulation
Maximum effective temperatures
Projected air temperatures
Concrete box girder
url http://www.sciencedirect.com/science/article/pii/S2590123023005807
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