Brief Description and the work performed by Resensys Case definition: Scour monitoring systems are crucial for safeguarding bridges, particularly in hurricane-prone areas. In May and June of 2023, Resensys deployed scour monitoring systems on ten bridges in

Scour Critical Bridges Monitoring in Florida (FDOT) and Quick Assessment after Hurricanes

Structural Health Monitoring (SHM), Scour Critical Bridge Monitoring & Retaining Wall Monitoring Systems in Colorado (CDOT)
Brief Description and the work performed by Resensys Case definition: Resensys monitoring systems have been deployed to monitor the structural health and scour conditions of multiple bridges and retaining walls in Colorado. Problems Identified: Solutions Implemented: Wireless

Scour Critical Bridges Monitoring in California (Caltrans)
Brief Description and the work performed by Resensys Case definition: Scour is the leading bridge failure reason for concrete bridges and 58% of bridge failures in the US are due to hydraulic conditions (Source: FHWA). More than

Enhancing Rod El-Farag Bridge Safety with Resensys Wireless SHM
The Resensys team proudly provided a wireless Structural Health Monitoring (SHM) system for the Rod El-Farag Cable-Stayed Bridge in Egypt, spanning the Nile River. The SHM system used Resensys wireless SenSpot technology to monitor strain, tilt, vibration

Resensys Wireless Bridge Monitoring in NASA Kennedy Space Center
Resensys Wireless Gauges play a vital role in overseeing NASA’s movable bridges in Cape Canaveral, Florida. This state-of-the-art system includes advanced wireless sensors such as the strain gauge SenSpot, accelerometer SenSpot, and tiltmeter SenSpot. Together, they form

Resensys Wireless systems used to monitor I-40 over Mississippi River Bridge
On May 12, 2021 a crack found in the I-40 bridge connecting Arkansas and Tennessee. This crack in a steel beam caused the bridge to be shut down immediately, resulting in traffic re-routing and massive efforts to

SenSpot™ for Monitoring Timber Bridges
Wireless SenSpot™ can be used for monitoring Timber Bridge Structures: •Measuring strain/stress in timber by Wireless Strain Gauge SenSpot™ •Measuring vertical displacement and deformation under loads by Wireless Displacement SenSpot™ •Obtaining load rating for timber bridges by

Scour Critical Bridge Case Study: Wireless Tilt, Wireless Water Level Sensors and Camera on Continuous Span Concrete Girder Bridge
Monitored variables and members: piers tilt (incline; roll and pitch), water level of the river under the bridge, camera Bridge Structure: The two west/east-bound bridges over river consists 7 piers and 2 abutments. Continuous span girder

Monitoring Bridges Australia Concrete Bridges under extreme loads: Wireless Strain Monitoring
The transport of extreme loads or “superloads” (deemed anything greater than 200 tonnes) on large convoys is often necessary in Victoria, Australia. Considerable planning and assessment are undertaken by the state’s Department of Transport (colloquially known as

Resensys wireless strain and tilt sensors on fracture critical US522 over Potomac River Bridge
Resensy’s wireless strain sensors (Strain SenSpot) and wireless tilt sensors (Tilt SenSpot) were used to monitor another fracture critical bridge in Maryland. The structural health monitoring based on Resensys SenSpot sensors system was deployed on bridge US522
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