Induced Seismicity in the Dannemora Mine, Sweden

Induced seismicity is a common phenomenon that occurs as soon as the stress state in the subsurface is externally altered in a way that faults are destabilized. It is especially problematic in stable tectonic regions where the area is not used to earthquakes; the infrastructure is not built to withs...

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Main Author: Holmgren, Joanna
Format: Others
Language:English
Published: Uppsala universitet, Geofysik 2015
Subjects:
Online Access:http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-267361
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spelling ndltd-UPSALLA1-oai-DiVA.org-uu-2673612015-11-25T04:54:33ZInduced Seismicity in the Dannemora Mine, SwedenengInducerad seismicitet vid Dannemora gruva, SverigeHolmgren, JoannaUppsala universitet, Geofysik2015Mining-induced seismicityphase pickingparticle motionlocal earthquake tomographycorrelationlocal magnitudeInduced seismicity is a common phenomenon that occurs as soon as the stress state in the subsurface is externally altered in a way that faults are destabilized. It is especially problematic in stable tectonic regions where the area is not used to earthquakes; the infrastructure is not built to withstand ground movement and thus when the induced seismicity occurs damage can follow. In this thesis, mining-induced seismicity has been studied at the Dannemora mine, located in central Sweden, with the aim to locate the seismicity and gain understanding of its occurrence and behavior. The mining company, Dannemora Mineral AB, provided with blasting locations and times, as well as maps over the mine's orebodies and stopes. Seismic data acquired between 01 July 2014 - 25 March 2015 from 4 temporary seismic stations, deployed in the summer of 2014 surrounding the mine, along with 8 SNSN stations was analyzed. The project encompassed field work and processing of the data, which involved different methods to investigate the characteristics of the mine's seismicity: Statistics were kept to record the activity rate of the seismicity over time; spectral analysis was used to study the frequency content of the seismicity; particle motion plots were constructed to identify body-phases in the seismicity; Local Earthquake Tomography was used to upgrade the velocity model of the mine and to relocate the induced seismicity with more accuracy; cross-correlation was used to find events originating from similar sources; and finally, magnitude analysis was used to compare the different types of seismicity within the mine. Three main types of induced events were observed in the mine: low-frequency events with clear first arrivals, emergent events with long duration, and high-frequency events that could either have clear first arrivals or emergent-like with long durations. Through the analysis of their characteristics, they were linked to different types of rockbursts. The low-frequency events were linked to both reactivation of fault zones triggered by the mine activity, and rockbursts within the mine directly related to the mining. The emergent and high-frequency events were also linked to rockbursts directly related to the mine activity, e.g. ejection of rock from the tunnel walls or arch collapses in stopes. Student thesisinfo:eu-repo/semantics/bachelorThesistexthttp://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-267361Examensarbete vid Institutionen för geovetenskaper, 1650-6553 ; 341application/pdfinfo:eu-repo/semantics/openAccess
collection NDLTD
language English
format Others
sources NDLTD
topic Mining-induced seismicity
phase picking
particle motion
local earthquake tomography
correlation
local magnitude
spellingShingle Mining-induced seismicity
phase picking
particle motion
local earthquake tomography
correlation
local magnitude
Holmgren, Joanna
Induced Seismicity in the Dannemora Mine, Sweden
description Induced seismicity is a common phenomenon that occurs as soon as the stress state in the subsurface is externally altered in a way that faults are destabilized. It is especially problematic in stable tectonic regions where the area is not used to earthquakes; the infrastructure is not built to withstand ground movement and thus when the induced seismicity occurs damage can follow. In this thesis, mining-induced seismicity has been studied at the Dannemora mine, located in central Sweden, with the aim to locate the seismicity and gain understanding of its occurrence and behavior. The mining company, Dannemora Mineral AB, provided with blasting locations and times, as well as maps over the mine's orebodies and stopes. Seismic data acquired between 01 July 2014 - 25 March 2015 from 4 temporary seismic stations, deployed in the summer of 2014 surrounding the mine, along with 8 SNSN stations was analyzed. The project encompassed field work and processing of the data, which involved different methods to investigate the characteristics of the mine's seismicity: Statistics were kept to record the activity rate of the seismicity over time; spectral analysis was used to study the frequency content of the seismicity; particle motion plots were constructed to identify body-phases in the seismicity; Local Earthquake Tomography was used to upgrade the velocity model of the mine and to relocate the induced seismicity with more accuracy; cross-correlation was used to find events originating from similar sources; and finally, magnitude analysis was used to compare the different types of seismicity within the mine. Three main types of induced events were observed in the mine: low-frequency events with clear first arrivals, emergent events with long duration, and high-frequency events that could either have clear first arrivals or emergent-like with long durations. Through the analysis of their characteristics, they were linked to different types of rockbursts. The low-frequency events were linked to both reactivation of fault zones triggered by the mine activity, and rockbursts within the mine directly related to the mining. The emergent and high-frequency events were also linked to rockbursts directly related to the mine activity, e.g. ejection of rock from the tunnel walls or arch collapses in stopes.
author Holmgren, Joanna
author_facet Holmgren, Joanna
author_sort Holmgren, Joanna
title Induced Seismicity in the Dannemora Mine, Sweden
title_short Induced Seismicity in the Dannemora Mine, Sweden
title_full Induced Seismicity in the Dannemora Mine, Sweden
title_fullStr Induced Seismicity in the Dannemora Mine, Sweden
title_full_unstemmed Induced Seismicity in the Dannemora Mine, Sweden
title_sort induced seismicity in the dannemora mine, sweden
publisher Uppsala universitet, Geofysik
publishDate 2015
url http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-267361
work_keys_str_mv AT holmgrenjoanna inducedseismicityinthedannemoraminesweden
AT holmgrenjoanna induceradseismicitetviddannemoragruvasverige
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