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10.1061/(ASCE)0733-9445(1990)116:2(407) | ||||
10.1061/(ASCE)0733-9445(1992)118:4(1090) | ||||
Thepchatri T. et al. (1977). “Prediction of temperature and stresses in highway bridges by a numerical procedure using daily weather reports.” Technical Rep. No. 23-1 Center for Highway Research University of Texas Austin Tex. | ||||
Roeder C. W. (2002). “Thermal movement design procedure for concrete bridges.” Final Rep. to NCHRP 20-7/106 National Cooperative Highway Research Program National Research Council Washington D.C. | ||||
Roeder C. W. (1998). “Thermal movement design procedure for steel bridges.” Rep. Prepared for American Iron and Steel Institute American Iron and Steel Institute Washington D.C. |
Title | Journal | Journal Categories | Citations | Publication Date |
---|---|---|---|---|
Superelastic Conical Friction Pendulum Isolator for Seismic Isolation of Bridges under Near-Fault Ground Motions | Structural Control and Health Monitoring |
| 1 | 2023 |
Remote Sensing Techniques for Bridge Deformation Monitoring at Millimetric Scale: Investigating the Potential of Satellite Radar Interferometry, Airborne Laser Scanning and Ground-Based Mobile Laser Scanning | PFG – Journal of Photogrammetry, Remote Sensing and Geoinformation Science |
| 1 | 2022 |
Temperature Field and Gradient Effect of a Steel-Concrete Composite Box Girder Bridge | Advances in Materials Science and Engineering |
| 4 | 2021 |
Estimation of Minimum Design Effective Temperature for Steel Box Girder Bridges Considering Asphalt Thickness of Concrete Deck | Journal of Korean Society of Steel Construction | 1 | 2019 | |
Estimation of the Maximum Design Effective Temperature for Steel Box Girder Bridges Considering Asphalt Thickness of Concrete Deck | Journal of Korean Society of Steel Construction | 2 | 2018 |