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    • TUM1 : Environmentally/ Mechanically Caused Changes in Microstructure
    • RUB1 : Scale-bridging Modeling of Microstructural Changes and Damage Analysis
    • BU : High-Performance Simulations of Wave Propagation
    • RUB2 : Thermo-Mechanical Experiments of RC Structures
    • TUM2 : Large Scale Hybrid Models for Structure Identification
    • BAM : Coda Wave Based Ultrasonic Methods for Concrete
  • Research Unit
    • BAM : Coda Wave Based Ultrasonic Methods for Concrete
    • BU : High-Performance Simulations of Wave Propagation
    • RUB1 : Scale-bridging Modeling of Microstructural Changes and Damage Analysis
    • RUB2 : Thermo-Mechanical Experiments of RC Structures
    • TUM1 : Environmentally/ Mechanically Caused Changes in Microstructure
    • TUM2 : Large Scale Hybrid Models for Structure Identification
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Research Unit

Concrete Damage Assessment by Coda Waves

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Condition assessment and surveillance are prerequisites for efficient maintenance of reinforced concrete structures. Consequently, there is a need for reliable and cost-efficient methods that are able to detect defects, monitor the actual condition, and predict the future evolution of the condition of reinforced concrete structures. This research unit CoDA (FOR 2825) proposes to make a significant contribution to the application of coda wave interferometry (CWI) in order to monitor and predict reliably and cost-efficiently the progress of the condition of reinforced concrete structures.

Challenge Solution - Detect the Changes

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Research Unit CoDA

 

Spokesperson
Prof. Dr.-Ing. Christoph Gehlen
Technical University of Munich
Chair of Materials Science and Testing
Franz-Langinger-Straße 10
81245 Munich

 

Contact
CoDA-Coordination
Dr.-Ing. Jithender J. Timothy
Eva Jägle, M.Sc.

coda.bwp(at)ed.tum.de

 

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