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Bio
My research aims to better understand the physical mechanisms behind injection-induced seismicity and fault reactivation. I use techniques employed in observational seismology, geomechanical modelling, reservoir geomechanics, and statistics to analyse large microseismic datasets from around the world.
My previous work has focused on using elastostatic models to study the continued propagation of seismicity, in order to inform monitoring practises and regulation (e.g. “traffic-light” schemes). This has been combined with fault stability analysis, to determine the likelihood of failure for faults near injection. My recent work has been investigating the application of statistical methods to forecast maximum magnitudes in real-time, using the observed microseismic populations to determine the likelihood of larger, more hazardous events.
I completed my MSci in Physics at the University of Bristol in 2016, and my PhD in Geology, also at Bristol, in 2020. I'm currently a Postdoctoral researcher at the University of Oxford.
Research Interests
Papers共 20 篇Author StatisticsCo-AuthorSimilar Experts
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Tine B. Larsen,Elin Skurtveit, Steve Pearson,Tom Kettlety,Jung Chan Choi, Chen Huang,Brian Carlton,J. Michael Kendall, Michael Kupoluyi,Daniela Kühn, Daniel Roberts, Kees K. Hindriks,
crossref(2024)
Tom Kettlety, Evgeniia Martuganova, Daniela Kühn,Johannes Schweitzer, Cornelis Weemstra, Brian Baptie,Trine Dahl-Jensen, Annie Jerkins,Peter H. Voss, J. Michael
First Breakno. 5 (2024): 31-36
85th EAGE Annual Conference & Exhibition (2024)
85th EAGE Annual Conference & Exhibition (2024)
crossref(2022)
EAGE GeoTech 2021 First EAGE Workshop on Induced Seismicityno. 1 (2021): 1-5
82nd EAGE Annual Conference & Exhibition (2021)
crossref(2021)
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