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Wojciech Gajek

Publications and source records attributed to Wojciech Gajek.

2 recordsLinked to original sources

Surface Crevasse Evolution Observed Using Matched Field Processing and Source Relocation at Hansbreen, Svalbard

Crevasses control glacier dynamics through fracture and meltwater routing, yet their propagation rates remain observationally scarce and poorly constrained across brittle-to-viscous regimes. Cryoseismology offers a powerful means to capture dynamic processes within glacial ice, with recent advances in novel processing methods like Matched Field Processing (MFP) applicable to dense seismic arrays. However, precise localisation of cryoseismic sources remains challenging in sparse or irregular seismic arrays. We propose a two-step workflow for metres-scale resolution mapping of glacial seismic activity that integrates MFP and discrete arrival times relocation under a limited instrumentation constraint. We apply this approach to analyse seismic activity at the ice surface on the Hansbreen glacier, Svalbard. Using MFP, we detect surface icequakes and characterise meltwater noise regardless of the limited instrumentation. The relocation procedure increases the accuracy of surface icequakes localisation and reveals ongoing crevasse opening episodes. The precise locations of the icequakes allow for the estimation of the crevasse propagation rate and the determination of the diffusion coefficients of 0.47 to 0.55 m2 per s. Based on the obtained results, we discuss brittle-to-viscous regime transfer and interpret the crevassing mechanism as sustained subcritical crack propagation, where viscous stress relaxation governs rates of orders of magnitude below elastic limits.

physics.geo-ph↗

Potentials and Challenges of Cryoseismology with Fiber Optic Sensing in the High Arctic: A pilot experiment in Hornsund, Svalbard

Distributed Acoustic Sensing (DAS) has emerged as a promising tool for environmental and cryoseismological studies, yet its performance under the extreme conditions of the High Arctic remains poorly documented. Here we report on a multi-season DAS experiment conducted across tundra and glacier environments in Hornsund, Svalbard, using 9\,km of fiber-optic cable. The study combines a description of the deployment strategy, instrumentation, and operational constraints with an exploratory analysis of the recorded data to assess the types of cryospheric processes that can be captured with DAS. We document logistical, environmental, and technical challenges and provides guidelines for future experiments, including issues related to coupling, noise sources, cable integrity, and seasonal accessibility. Furthermore, we demonstrate how the dataset can be used for detecting permafrost freezing using noise interferometry, locating icequakes and calving events, as well as monitoring runoff from river-induced seismic noise. The experiment provides a field-based reference for the design and interpretation of future DAS studies in Arctic environments and highlights considerations relevant for long-term cryoseismological monitoring.

physics.geo-ph↗