Structural Performance and Reasonable Cross-Ratio of Cross-Cable Multi-Tower Cable-Stayed Bridges

The Queensferry Crossing in the UK is the first multi-tower cable-stayed bridge in the world to use mid-span cross-stayed cables to improve structural rigidity. To study the structural performance and economy of cross-cable multi-tower cable-stayed bridges, a total of 11 finite element models were e...

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التفاصيل البيبلوغرافية
الحاوية / القاعدة:Buildings
المؤلفون الرئيسيون: Sisi Yao, Biao Peng, Luyao Wang, Hengda Chen
التنسيق: مقال
اللغة:الإنجليزية
منشور في: MDPI AG 2022-06-01
الموضوعات:
الوصول للمادة أونلاين:https://www.mdpi.com/2075-5309/12/6/764
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author Sisi Yao
Biao Peng
Luyao Wang
Hengda Chen
author_facet Sisi Yao
Biao Peng
Luyao Wang
Hengda Chen
author_sort Sisi Yao
collection DOAJ
container_title Buildings
description The Queensferry Crossing in the UK is the first multi-tower cable-stayed bridge in the world to use mid-span cross-stayed cables to improve structural rigidity. To study the structural performance and economy of cross-cable multi-tower cable-stayed bridges, a total of 11 finite element models were established using two cross-cable setting methods. By changing the number of crossed cables in the mid-span, the variation laws of structural deformation and internal force are obtained. The cross-cable efficiency based on structural stiffness and the cross-cable economy based on the consumption of cables used in the entire bridge are quantitatively analyzed, and it is considered that there is a reasonable cross-ratio of cross-cables. Combined with the current design specification and the empirical data of the actual bridge, the limits of the double indicators were determined, and a scheme comparison chart was formed. The results show that under the action of unbalanced load, the cross cable can greatly reduce deformation and balance the internal force of the structure. The optimal solution is to form a mid-span cable crossing by adjusting the cable spacing, and the reasonable range of cross-ratio is 15%~35%. If the structural stiffness is improved by adding additional cross cables, the cross-ratio should be controlled within 16% to ensure structural economy. This provides a reference for the design and research of cross-cable multi-tower cable-stayed bridges in the future.
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spelling doaj-art-e7ff115e95be4be0842b275e63642df52025-08-19T23:25:34ZengMDPI AGBuildings2075-53092022-06-0112676410.3390/buildings12060764Structural Performance and Reasonable Cross-Ratio of Cross-Cable Multi-Tower Cable-Stayed BridgesSisi Yao0Biao Peng1Luyao Wang2Hengda Chen3Institute of Land Engineering and Technology, Shaanxi Provincial Land Engineering Construction Group Co., Ltd., Xi’an 710075, ChinaInstitute of Land Engineering and Technology, Shaanxi Provincial Land Engineering Construction Group Co., Ltd., Xi’an 710075, ChinaInstitute of Land Engineering and Technology, Shaanxi Provincial Land Engineering Construction Group Co., Ltd., Xi’an 710075, ChinaShaanxi Provincial Key Laboratory of Bridges and Tunnels, Chang’an University, Xi’an 710064, ChinaThe Queensferry Crossing in the UK is the first multi-tower cable-stayed bridge in the world to use mid-span cross-stayed cables to improve structural rigidity. To study the structural performance and economy of cross-cable multi-tower cable-stayed bridges, a total of 11 finite element models were established using two cross-cable setting methods. By changing the number of crossed cables in the mid-span, the variation laws of structural deformation and internal force are obtained. The cross-cable efficiency based on structural stiffness and the cross-cable economy based on the consumption of cables used in the entire bridge are quantitatively analyzed, and it is considered that there is a reasonable cross-ratio of cross-cables. Combined with the current design specification and the empirical data of the actual bridge, the limits of the double indicators were determined, and a scheme comparison chart was formed. The results show that under the action of unbalanced load, the cross cable can greatly reduce deformation and balance the internal force of the structure. The optimal solution is to form a mid-span cable crossing by adjusting the cable spacing, and the reasonable range of cross-ratio is 15%~35%. If the structural stiffness is improved by adding additional cross cables, the cross-ratio should be controlled within 16% to ensure structural economy. This provides a reference for the design and research of cross-cable multi-tower cable-stayed bridges in the future.https://www.mdpi.com/2075-5309/12/6/764multi-tower cable-stayed bridgescross cabledouble indicatorsreasonable cross-ratio
spellingShingle Sisi Yao
Biao Peng
Luyao Wang
Hengda Chen
Structural Performance and Reasonable Cross-Ratio of Cross-Cable Multi-Tower Cable-Stayed Bridges
multi-tower cable-stayed bridges
cross cable
double indicators
reasonable cross-ratio
title Structural Performance and Reasonable Cross-Ratio of Cross-Cable Multi-Tower Cable-Stayed Bridges
title_full Structural Performance and Reasonable Cross-Ratio of Cross-Cable Multi-Tower Cable-Stayed Bridges
title_fullStr Structural Performance and Reasonable Cross-Ratio of Cross-Cable Multi-Tower Cable-Stayed Bridges
title_full_unstemmed Structural Performance and Reasonable Cross-Ratio of Cross-Cable Multi-Tower Cable-Stayed Bridges
title_short Structural Performance and Reasonable Cross-Ratio of Cross-Cable Multi-Tower Cable-Stayed Bridges
title_sort structural performance and reasonable cross ratio of cross cable multi tower cable stayed bridges
topic multi-tower cable-stayed bridges
cross cable
double indicators
reasonable cross-ratio
url https://www.mdpi.com/2075-5309/12/6/764
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