Co-detection of acoustic emissions during failure of heterogeneous media: new perspectives for natural hazard early warning
read the original abstract
A promising method for real time early warning of gravity driven rupture that considers both the heterogeneity of natural media and characteristics of acoustic emissions attenuation is proposed. The method capitalizes on co-detection of elastic waves emanating from micro-cracks by multiple and spatially separated sensors. Event co-detection is considered as surrogate for large event size with more frequent co-detected events marking imminence of catastrophic failure. Using a spatially explicit fiber bundle numerical model with spatially correlated mechanical strength and two load redistribution rules, we constructed a range of mechanical failure scenarios and associated failure events (mapped into AE) in space and time. Analysis considering hypothetical arrays of sensors and consideration of signal attenuation demonstrate the potential of the co-detection principles even for insensitive sensors to provide early warning for imminent global failure.
This paper has not been read by Pith yet.
Forward citations
Cited by 1 Pith paper
-
Growth of shear failure in snow slab avalanche release: analytical solution for a compliant weak layer with finite softening
New analytical solution for shear failure propagation in snow avalanches distinguishes fully softened crack length a_c from total affected length b_c and recovers classical brittle limit when softening displacement vanishes.
discussion (0)
Sign in with ORCID, Apple, or X to comment. Anyone can read and Pith papers without signing in.