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Structure and Infrastructure Engineering
Maintenance, Management, Life-Cycle Design and Performance
Volume 1, 2005 - Issue 2
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Original Articles

Assessment of bridges via monitoring

Pages 101-117 | Received 23 May 2004, Accepted 02 Jun 2004, Published online: 16 Feb 2007

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (2)

Zhen Li, Yunfeng Zhang & Chunsheng Wang. (2013) A sensor-driven structural health prognosis procedure considering sensor performance degradation. Structure and Infrastructure Engineering 9:8, pages 764-776.
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DanM. Frangopol, Duygu Saydam & Sunyong Kim. (2012) Maintenance, management, life-cycle design and performance of structures and infrastructures: a brief review. Structure and Infrastructure Engineering 8:1, pages 1-25.
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Articles from other publishers (15)

Gunnstein T. Frøseth & Anders Rönnquist. (2019) Load model of historic traffic for fatigue life estimation of Norwegian railway bridges. Engineering Structures 200, pages 109626.
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Samantha Sabatino & Dan M. Frangopol. (2017) Decision making framework for optimal SHM planning of ship structures considering availability and utility. Ocean Engineering 135, pages 194-206.
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You-liang DingYong-sheng SongBao-ya CaoGao-xin WangAi-qun Li. (2016) Full-Range S-N Fatigue-Life Evaluation Method for Welded Bridge Structures Considering Hot-Spot and Welding Residual Stress. Journal of Bridge Engineering 21:12.
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Samantha Sabatino & M Frangopol. (2016) Structural Health Monitoring Planning of Ship Structures in a Life-Cycle Perspective. Structural Health Monitoring Planning of Ship Structures in a Life-Cycle Perspective.
Xiao Wang, Yi-Qing Ni & Ke-Chang Lin. (2015) Comparison of statistical counting methods in SHM-based reliability assessment of bridges. Journal of Civil Structural Health Monitoring 5:3, pages 275-286.
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S. Yan, C. J. Wang, W. Sun & G. Song. (2015) Damage Status Identification of Piezoelectric Concrete Frame Structure Based on Fuzzy Comprehensive Evaluation. Damage Status Identification of Piezoelectric Concrete Frame Structure Based on Fuzzy Comprehensive Evaluation.
Wei Lu, FengQi Wu, Jun Teng & QiuShi Zhou. (2014) Estimation on structural responses using multi scale measurements. Science China Technological Sciences 57:9, pages 1707-1713.
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X. W. Ye, Y. H. Su & J. P. Han. (2014) A State-of-the-Art Review on Fatigue Life Assessment of Steel Bridges. Mathematical Problems in Engineering 2014, pages 1-13.
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Xing Hua Chen & Piotr Omenzetter. (2013) A Framework for Reliability Assessment of an In-Service Bridge Using Structural Health Monitoring Data. Key Engineering Materials 558, pages 39-51.
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H.W. Xia, Y.Q. Ni, K.Y. Wong & J.M. Ko. (2012) Reliability-based condition assessment of in-service bridges using mixture distribution models. Computers & Structures 106-107, pages 204-213.
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Sunyong KimDan M. Frangopol. (2011) Cost-Effective Lifetime Structural Health Monitoring Based on Availability. Journal of Structural Engineering 137:1, pages 22-33.
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Zi-yan Wu, Jun Cao & Lan Ding. (2010) Structural state assessment based on similarity degree of membership cloud. Structural state assessment based on similarity degree of membership cloud.
Udo Peil. 2009. Encyclopedia of Structural Health Monitoring. Encyclopedia of Structural Health Monitoring.
Erdogan Altunok, Mahmoud M. Reda Taha, David S. Epp, Randy L. Mayes & Thomas J. Baca. (2006) Damage Pattern Recognition for Structural Health Monitoring Using Fuzzy Similarity Prescription. Computer-Aided Civil and Infrastructure Engineering 21:8, pages 549-560.
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U. Peil, M. Mehdianpour, M. Frenz & R. Scharff. (2005) Life time prediction of old bridges. Materialwissenschaft und Werkstofftechnik 36:11, pages 715-721.
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