Seismic hazard analysis using mapping techniques for underground, narrow-vein metal mines

dc.contributor.authorReimer, Eliot
dc.date.accessioned2018-05-03T18:08:58Z
dc.date.available2018-05-03T18:08:58Z
dc.date.issued2018-02-09
dc.description.abstractThis thesis investigates the ability to forecast the occurrence of large events through node-based hazard mapping at KGHM’s Morrison Mine located in Levack, ON. Nodebased hazard maps function by pasting a heat-map onto a solid model of mine workings to identify, visually, the areas that have experienced high levels of seismicity. The notion within this research is that it is possible to forecast the occurrence of large seismic events with a reasonable degree of effectiveness using a trailing period of 6-months and a forecast period of the following 2-months. Using the following parameters, each hazard map has been analyzed over three different forecast periods: • Cumulative Seismic Energy • Cumulative Seismic Moment • Number of Events > Defined Magnitude o M > 0 o M > -0.5 o M > -1 • Number of Events > Apparent Stress, 80th percentile The forecast periods analyzed were April – June 2016, June – August 2016, and August – October 2016 with a success rate (the number of events successfully forecasted) between 38% and 67% and false alarm rates (the number of denoted hazard areas that did not experience large events in the forecast period) between 41% and 65%.en_CA
dc.description.degreeMaster’s of Applied Science (M.A.Sc) in Natural Resources Engineeringen_CA
dc.identifier.urihttps://laurentian.scholaris.ca/handle/10219/3101
dc.language.isoenen_CA
dc.publisher.grantorLaurentian University of Sudburyen_CA
dc.subjectSeismicityen_CA
dc.subjectMiningen_CA
dc.subjectSeismic energyen_CA
dc.subjectSeismic momenten_CA
dc.subjectApparent stressen_CA
dc.subjectSeismic hazarden_CA
dc.subjectSeismic hazard mappingen_CA
dc.titleSeismic hazard analysis using mapping techniques for underground, narrow-vein metal minesen_CA
dc.typeThesisen_CA

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