DocumentCode
2540562
Title
Real-time Bridge Scouring Safety Monitoring System by Using Mobile Wireless Technology
Author
Liu, Yu-Ting ; Tong, Jian-Hua ; Lin, Yiching ; Lee, Tsung-Han ; Chang, Chia-Feng
Author_Institution
Dapartment of Civil Eng., Nat. Chung Hsing Univ., Taichung, Taiwan
fYear
2010
fDate
13-15 Dec. 2010
Firstpage
501
Lastpage
504
Abstract
The scour is one of the major causes for bridge failure. Scour failure occurs suddenly without prior warning or sign of distress to the bridge. However, there are many challenges to monitor the processes of hydraulic scour, such as measuring equipments are essentially critical, especially during the floods. This paper presents an in-situ scour monitoring system by using the novel mobile wireless technology. The bridge piles subjected to scouring can result in the structural failure. Digital sensor nodes are embedded in the river bed at their designated depths. Because of the scouring depth can be identified by monitoring the responses of these digital sensor nodes via a time-history diagram. Using mobile wireless techniques (Wi-Fi and 3G) can report the scouring depth in real-time for safety evaluation of the bridge. The in-situ real-time bridge scouring monitoring system was applied successfully in the field during Morako typhoon in 2009 in Taiwan. This system has been demonstrated the reliable for real-time scouring-depth measurements.
Keywords
3G mobile communication; bridges (structures); condition monitoring; failure analysis; foundations; safety; structural engineering; wireless LAN; 3G mobile communication; Wi-Fi; bridge piles; hydraulic scour; mobile wireless technology; realtime bridge scouring safety monitoring system; structural failure; Bridges; Mobile communication; Monitoring; Real time systems; Switches; Wireless communication; Wireless sensor networks; evaluate bridge safety; record; scouring depth;
fLanguage
English
Publisher
ieee
Conference_Titel
Genetic and Evolutionary Computing (ICGEC), 2010 Fourth International Conference on
Conference_Location
Shenzhen
Print_ISBN
978-1-4244-8891-9
Electronic_ISBN
978-0-7695-4281-2
Type
conf
DOI
10.1109/ICGEC.2010.131
Filename
5715479
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