AbstractMeasuring amplitude and phase of continuous ultrasonic waves with a lock-in amplifier is shown to give similarly sensitive indicators of concrete damage as pulsed coda wave analysis, but maintains its sensitivity at considerably much lower signal levels. Continuous and pulsed measurements were performed on a concrete slab subjected to cyclically increased damage level. In the unloaded phase each measurement type was performed at varying transmit signal levels. The result indicates the possibility of using a larger distance between transducers in high frequency health monitoring systems of concrete structures, where attenuation of propagating waves is strong
There is an increasing demand on the safety and reliability of the civil structures that make up our...
With their long and complex propagation paths, coda waves can probe the propagation medium repeatedl...
International audienceConcrete is a widely used construction material by virtue of its cost and mech...
Structural health monitoring systems for civil structures based on ultrasonic guided waves face the ...
The work presented in this thesis has aimed to investigate and implement techniques for ultrasonic m...
International audienceA high precision can be achieved with ultrasonic coda waves to monitor the mec...
International audienceA high precision can be achieved with ultrasonic coda waves to monitor the mec...
International audienceA high precision can be achieved with ultrasonic coda waves to monitor the mec...
International audienceA high precision can be achieved with ultrasonic coda waves to monitor the mec...
International audienceA high precision can be achieved with ultrasonic coda waves to monitor the mec...
International audienceA high precision can be achieved with ultrasonic coda waves to monitor the mec...
Concrete is the most widely used building material in the world and its stability assessment is of u...
A high precision can be achieved with ultrasonic coda waves to monitor the mechanical properties of ...
Condition or health monitoring of concrete structures has experienced increasing interest over the l...
The prevalence of concrete and cement-based materials in the civil infrastructure plus the risk of f...
There is an increasing demand on the safety and reliability of the civil structures that make up our...
With their long and complex propagation paths, coda waves can probe the propagation medium repeatedl...
International audienceConcrete is a widely used construction material by virtue of its cost and mech...
Structural health monitoring systems for civil structures based on ultrasonic guided waves face the ...
The work presented in this thesis has aimed to investigate and implement techniques for ultrasonic m...
International audienceA high precision can be achieved with ultrasonic coda waves to monitor the mec...
International audienceA high precision can be achieved with ultrasonic coda waves to monitor the mec...
International audienceA high precision can be achieved with ultrasonic coda waves to monitor the mec...
International audienceA high precision can be achieved with ultrasonic coda waves to monitor the mec...
International audienceA high precision can be achieved with ultrasonic coda waves to monitor the mec...
International audienceA high precision can be achieved with ultrasonic coda waves to monitor the mec...
Concrete is the most widely used building material in the world and its stability assessment is of u...
A high precision can be achieved with ultrasonic coda waves to monitor the mechanical properties of ...
Condition or health monitoring of concrete structures has experienced increasing interest over the l...
The prevalence of concrete and cement-based materials in the civil infrastructure plus the risk of f...
There is an increasing demand on the safety and reliability of the civil structures that make up our...
With their long and complex propagation paths, coda waves can probe the propagation medium repeatedl...
International audienceConcrete is a widely used construction material by virtue of its cost and mech...