Assessment on Time-Varying Thermal Loading of Engineering Structures Based on a New Solar Radiation Model
This paper aims to carry out the condition assessment on solar radiation model and thermal loading of bridges. A modification factor is developed to change the distribution of solar intensities during a whole day. In addition, a new solar radiation model for civil engineering structures is proposed...
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2014-01-01
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Series: | Mathematical Problems in Engineering |
Online Access: | http://dx.doi.org/10.1155/2014/639867 |
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doaj-2b9817296bfc47478c257f3b2fc3ac492020-11-24T22:32:42ZengHindawi LimitedMathematical Problems in Engineering1024-123X1563-51472014-01-01201410.1155/2014/639867639867Assessment on Time-Varying Thermal Loading of Engineering Structures Based on a New Solar Radiation ModelBo Chen0Yu-zhou Sun1Gan-jun Wang2Ling-yan Duan3Key Laboratory of Roadway Bridge and Structural Engineering, Wuhan University of Technology, Wuhan 430070, ChinaSchool of Civil Engineering and Architecture, Zhongyuan University of Technology, Zhengzhou 450007, ChinaZhongshan Power Supply Bureau, Guangdong 528400, ChinaKey Laboratory of Roadway Bridge and Structural Engineering, Wuhan University of Technology, Wuhan 430070, ChinaThis paper aims to carry out the condition assessment on solar radiation model and thermal loading of bridges. A modification factor is developed to change the distribution of solar intensities during a whole day. In addition, a new solar radiation model for civil engineering structures is proposed to consider the shelter effects induced by cloud, mountains, and surrounding structures. The heat transfer analysis of bridge components is conducted to calculate the temperature distributions based on the proposed new solar radiation model. By assuming that the temperature along the bridge longitudinal direction is constant, one typical bridge segment is specially studied. Fine finite element models of deck plates and corrugate sheets are constructed to examine the temperature distributions and thermal loading of bridge components. The feasibility and validity of the proposed solar radiation model are investigated through detailed numerical simulation and parametric study. The numerical results are compared with the field measurement data obtained from the long-term monitoring system of the bridge and they shows a very good agreement in terms of temperature distribution in different time instants and in different seasons. The real application verifies effectiveness and validity of the proposed solar radiation and heat transfer analysis.http://dx.doi.org/10.1155/2014/639867 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Bo Chen Yu-zhou Sun Gan-jun Wang Ling-yan Duan |
spellingShingle |
Bo Chen Yu-zhou Sun Gan-jun Wang Ling-yan Duan Assessment on Time-Varying Thermal Loading of Engineering Structures Based on a New Solar Radiation Model Mathematical Problems in Engineering |
author_facet |
Bo Chen Yu-zhou Sun Gan-jun Wang Ling-yan Duan |
author_sort |
Bo Chen |
title |
Assessment on Time-Varying Thermal Loading of Engineering Structures Based on a New Solar Radiation Model |
title_short |
Assessment on Time-Varying Thermal Loading of Engineering Structures Based on a New Solar Radiation Model |
title_full |
Assessment on Time-Varying Thermal Loading of Engineering Structures Based on a New Solar Radiation Model |
title_fullStr |
Assessment on Time-Varying Thermal Loading of Engineering Structures Based on a New Solar Radiation Model |
title_full_unstemmed |
Assessment on Time-Varying Thermal Loading of Engineering Structures Based on a New Solar Radiation Model |
title_sort |
assessment on time-varying thermal loading of engineering structures based on a new solar radiation model |
publisher |
Hindawi Limited |
series |
Mathematical Problems in Engineering |
issn |
1024-123X 1563-5147 |
publishDate |
2014-01-01 |
description |
This paper aims to carry out the condition assessment on solar radiation model and thermal loading of bridges. A modification factor is developed to change the distribution of solar intensities during a whole day. In addition, a new solar radiation model for civil engineering structures is proposed to consider the shelter effects induced by cloud, mountains, and surrounding structures. The heat transfer analysis of bridge components is conducted to calculate the temperature distributions based on the proposed new solar radiation model. By assuming that the temperature along the bridge longitudinal direction is constant, one typical bridge segment is specially studied. Fine finite element models of deck plates and corrugate sheets are constructed to examine the temperature distributions and thermal loading of bridge components. The feasibility and validity of the proposed solar radiation model are investigated through detailed numerical simulation and parametric study. The numerical results are compared with the field measurement data obtained from the long-term monitoring system of the bridge and they shows a very good agreement in terms of temperature distribution in different time instants and in different seasons. The real application verifies effectiveness and validity of the proposed solar radiation and heat transfer analysis. |
url |
http://dx.doi.org/10.1155/2014/639867 |
work_keys_str_mv |
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