Results 241 to 250 of about 951,547 (299)
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2003
Mitigating the effects of earthquakes is crucial to bridge design. With chapters culled from the best-selling Bridge Engineering Handbook, this volume sets forth the principles and applications of seismic design, from the necessary geotechnical and dynamic analysis background to seismic isolation and energy dissipation, active control, and ...
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Mitigating the effects of earthquakes is crucial to bridge design. With chapters culled from the best-selling Bridge Engineering Handbook, this volume sets forth the principles and applications of seismic design, from the necessary geotechnical and dynamic analysis background to seismic isolation and energy dissipation, active control, and ...
+4 more sources
Bridging gaps by cooperation engineering
Proceedings of the 10th International Conference on Information Integration and Web-based Applications & Services, 2008The growing complexity and interdisciplinarity of problems in commerce, production, logistics, and nowadays in view of natural and man-made desasters ad requires increased intensive, reliable and effective cooperation. On the other hand globalisation impedes the classical form of cooperation in face-to-face meetings, causing gaps in the cooperation ...
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BRIDGING RELIABILITY ENGINEERING AND SYSTEMS ENGINEERING
SAE Technical Paper Series, 2016<title>ABSTRACT</title> <p>The increasing application of sensors, actuators, and complex algorithms for delivering artificial intelligence and connectivity in products and product-systems will drive an unprecedented growth in design complexity and
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2014
1 Geotechnical Earthquake Considerations 2 Earthquake Damage to Bridges 3 Dynamic Analysis 4 Seismic Random Response Analysis 5 Nonlinear Analysis 6 Displacement-Based Seismic Design of Bridges 7 Seismic Bridge Design Specifications for the United States 8 Seismic Design of Concrete Bridges 9 Seismic Design of Steel Bridges 10 Seismic Design ...
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1 Geotechnical Earthquake Considerations 2 Earthquake Damage to Bridges 3 Dynamic Analysis 4 Seismic Random Response Analysis 5 Nonlinear Analysis 6 Displacement-Based Seismic Design of Bridges 7 Seismic Bridge Design Specifications for the United States 8 Seismic Design of Concrete Bridges 9 Seismic Design of Steel Bridges 10 Seismic Design ...
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Bridge engineering and aerodynamics
2017The present paper outlines the salient aerodynamic features in present and future bridge design. The theoretical and experimental tools available to the designer are addressed. These include wind screens, specially designed cables and towers, and aerodynamic appendages such as guide vanes. Various systems used to control oscillation are also discussed.
Klaus H. Ostenfeld, Allan Larsen
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The bridge as a "bridge" between engineers and architects"
2000Politecnico di Torino, Torino 25 novembre ...
ZORDAN, SIVIERO, ENZO
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Intelligent bridge management via big data knowledge engineering
Automation in Construction, 2022Ren Li, Luyi Zhang, Shixin Jiang
exaly
1999
The Bridge Engineering Handbook is presented in seven sections: 1. Fundamentals; 2. Superstructure Design; 3. Substructure Design; 4. Seismic Design; 5. Construction and Maintenance; 6. Special Topics (including Weigh-in-Motion Measurement of Trucks on Bridges, Impact Effect of Moving Vehicles, and Wind Effects on Long-span Bridges); 7.
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The Bridge Engineering Handbook is presented in seven sections: 1. Fundamentals; 2. Superstructure Design; 3. Substructure Design; 4. Seismic Design; 5. Construction and Maintenance; 6. Special Topics (including Weigh-in-Motion Measurement of Trucks on Bridges, Impact Effect of Moving Vehicles, and Wind Effects on Long-span Bridges); 7.
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State-of-the-art and annual progress of bridge engineering in 2021
Advances in Bridge Engineering, 2022Xiao-zhen Li, Guoji Xu, Chuanjin Yu
exaly

