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      Raspberry Shake Instruments Provide Initial Ground-Motion Assessment of the Induced Seismicity at the United Downs Deep Geothermal Power Project in Cornwall, United Kingdom

      1 , 1
      The Seismic Record
      Seismological Society of America (SSA)

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          Abstract

          Raspberry Shake (RS) seismographs offer the potential for affordable and citizen-led seismic monitoring in areas with few publicly available seismometers, especially in previously quiescent regions experiencing induced seismicity. However, their scientific and regulatory potential remains largely untested. We examine the ground motions recorded by 11 RS and one broadband station within 15 km of the United Downs Deep Geothermal Power (UDDGP) project in Cornwall, United Kingdom, to evaluate the RS network’s suitability to provide an initial ground-motion assessment of the region. To date, the British Geological Survey (BGS) has reported 232 induced events originating at UDDGP since flow testing began in summer 2020, with two events exceeding local magnitude (ML) 1.5. Although the RS accelerometers are too noisy for UDDGP’s microseismic events, the vertical geophones are useful. Peak ground velocity observations are consistent with relevant ground-motion models, whereas peak ground acceleration (PGA) values are greater than predicted. Regional trends in the PGA levels are likely caused by path effects. Finally, RS estimates of ML are similar to those reported by the BGS. For sparse national seismic networks, RS stations can enable a preliminary evaluation of seismic events and their ground motions.

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          Author and article information

          Contributors
          (View ORCID Profile)
          (View ORCID Profile)
          Journal
          The Seismic Record
          Seismological Society of America (SSA)
          2694-4006
          May 13 2021
          April 01 2021
          May 13 2021
          April 01 2021
          : 1
          : 1
          : 27-34
          Affiliations
          [1 ]School of Earth Sciences, University of Bristol, Bristol, United Kingdom
          Article
          10.1785/0320210010
          0b6c5f70-7d8b-4f28-8f4d-4ede732313ef
          © 2021

          http://creativecommons.org/licenses/by/2.0/

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