Nonsystematic Rupture Directivity of Geothermal Energy Induced Microseismicity in Helsinki, Finland

Author:

Holmgren J. M.1ORCID,Kwiatek G.2ORCID,Werner M. J.1ORCID

Affiliation:

1. School of Earth Sciences University of Bristol Bristol UK

2. Section 4.2: Geomechanics and Scientific Drilling Helmholtz Centre Potsdam GFZ German Research Centre for Geosciences Potsdam Germany

Abstract

AbstractThe rupture behavior of microseismicity in fluid‐injection settings with low fault stresses is generally believed to be controlled by the pore pressure, including a tendency of the larger induced earthquakes to rupture into the perturbed volume toward the injection well, implying a degree of predictability. Here, we examine directivity patterns to identify fault planes and rupture directions of the 21 largest earthquakes (local magnitudes, 1.3–1.9) recorded during the 2018 St1 Deep Heat geothermal project near Helsinki, Finland. We use the Empirical Green's Function technique to retrieve per‐seismic‐station corner frequencies, earthquake durations, and directivity trends. After combining the directivity trends with focal mechanisms calculated using principle component analysis, we resolve rupture planes and rupture directions of 10 events. In contrast to studies of induced events at other sites, we find that one event rupture toward, two rupture away, and the remaining rupture parallel to the well. Furthermore, we find that the events prefer mode II failures rather than mode III. These observations provide new constraints for mechanical models of rupture growth in pore‐pressure dominated settings.

Funder

Natural Environment Research Council

Publisher

American Geophysical Union (AGU)

Subject

Space and Planetary Science,Earth and Planetary Sciences (miscellaneous),Geochemistry and Petrology,Geophysics

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