Design and Analysis of Cable-Stayed Bridge
碩士 === 中原大學 === 土木工程研究所 === 91 === The target of this research is about the cable-stayed bridges, including the introduction of cable-stayed bridges, the design and structural analysis of cable-stayed bridges. In addition, we take two examples: Erl-Chorng Cable-Stayed Bridge (single tower, double pl...
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ndltd-TW-091CYCU50150242015-10-13T16:56:29Z http://ndltd.ncl.edu.tw/handle/29867027999208142458 Design and Analysis of Cable-Stayed Bridge 斜張橋設計與分析 Ching-Wen Hsu 許清雯 碩士 中原大學 土木工程研究所 91 The target of this research is about the cable-stayed bridges, including the introduction of cable-stayed bridges, the design and structural analysis of cable-stayed bridges. In addition, we take two examples: Erl-Chorng Cable-Stayed Bridge (single tower, double plane fan configuration, symmetrical steel structures) and Kao-Ping Hsi Cable-Stayed Bridge (single tower, single plane fan configuration, asymmetrical compound structures). By studying these cases, we can see the difference between the cable-stayed bridge and the traditional bridges in design flow and behaviors, and can optimize the design and save materials. In the study, we use the professional design program, TANGO, to analyze the examples of cable-stayed bridges, to do the comparison of structural behaviors of the cable-stayed bridges in different loading conditions and to obtain the deflection and internal forces (moment, shear force, axial force, etc). Cable replacement is another text topic of this research, which is very important for maintenance. The AISC specification is used to check the allowable stress and P-Δ effects. Chung-Ming Ho Kim-Kuo Cheng 何仲明 鄭金國 2003 學位論文 ; thesis 214 zh-TW |
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碩士 === 中原大學 === 土木工程研究所 === 91 === The target of this research is about the cable-stayed bridges, including the introduction of cable-stayed bridges, the design and structural analysis of cable-stayed bridges. In addition, we take two examples: Erl-Chorng Cable-Stayed Bridge (single tower, double plane fan configuration, symmetrical steel structures) and Kao-Ping Hsi Cable-Stayed Bridge (single tower, single plane fan configuration, asymmetrical compound structures). By studying these cases, we can see the difference between the cable-stayed bridge and the traditional bridges in design flow and behaviors, and can optimize the design and save materials.
In the study, we use the professional design program, TANGO, to analyze the examples of cable-stayed bridges, to do the comparison of structural behaviors of the cable-stayed bridges in different loading conditions and to obtain the deflection and internal forces (moment, shear force, axial force, etc). Cable replacement is another text topic of this research, which is very important for maintenance. The AISC specification is used to check the allowable stress and P-Δ effects.
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author2 |
Chung-Ming Ho |
author_facet |
Chung-Ming Ho Ching-Wen Hsu 許清雯 |
author |
Ching-Wen Hsu 許清雯 |
spellingShingle |
Ching-Wen Hsu 許清雯 Design and Analysis of Cable-Stayed Bridge |
author_sort |
Ching-Wen Hsu |
title |
Design and Analysis of Cable-Stayed Bridge |
title_short |
Design and Analysis of Cable-Stayed Bridge |
title_full |
Design and Analysis of Cable-Stayed Bridge |
title_fullStr |
Design and Analysis of Cable-Stayed Bridge |
title_full_unstemmed |
Design and Analysis of Cable-Stayed Bridge |
title_sort |
design and analysis of cable-stayed bridge |
publishDate |
2003 |
url |
http://ndltd.ncl.edu.tw/handle/29867027999208142458 |
work_keys_str_mv |
AT chingwenhsu designandanalysisofcablestayedbridge AT xǔqīngwén designandanalysisofcablestayedbridge AT chingwenhsu xiézhāngqiáoshèjìyǔfēnxī AT xǔqīngwén xiézhāngqiáoshèjìyǔfēnxī |
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