Stress-induced temporal variations in seismic anisotropy observed in microseismic data

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Abstract

In situ stress monitoring of crustal rocks is desirable as it yields insights into earthquake mechanisms, volcanic eruptions and changes in hydrocarbon reservoirs. Shear wave splitting, induced by stress-controlled cracks in the shallow crust, provides a way to infer this stress. Temporal variations in these observations can be difficult to quantify due to scatter in the data and discontinuous observations. Here we present evidence of temporal variations in shear wave splitting from a continuous time-series with a high occurrence of microseismic events recorded in a borehole. We interpret these observations in terms of stress-controlled cracks and are able to infer changes in stress and, via modelling, suggest the cause of the anisotropy. Possible origins of the temporal variation in per cent anisotropy are tidal or oil-field production processes. Our results suggest that shear wave splitting is a viable probe for inferring changes in crustal stress in cracked rock. © 2004 RAS.

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Teanby, N., Kendall, J. M., Jones, R. H., & Barkved, O. (2004). Stress-induced temporal variations in seismic anisotropy observed in microseismic data. Geophysical Journal International, 156(3), 459–466. https://doi.org/10.1111/j.1365-246X.2004.02212.x

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