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Microseismic icequake catalogue, Rutford Ice Stream (West Antarctica), November 2018 to February 2019

This dataset contains ASCII files with hypocenter information, event times and magnitudes for 227029 micro-earthquakes with a magnitude range from -2.0 to -0.3 recorded from a 35-station seismic network located ~40 km upstream of the grounding line of Rutford Ice Stream, West Antarctica. For 87910 of these events, earthquake focal mechanisms (strike/dip/rake) are available. The seismic network, which recordings are the base for the event catalogue, broadly formed a rectangle with 1 km station spacing. Details on the station locations, instrument types and operation periods are included in these data files. The event catalogue encloses the geographic region between 084.142 to 083.760 degrees West and 78.204 to 78.113 degrees South. Events are located between 1.553 and 2.416 km depth. Recording took place between 20th November 2018 and 16th February 2019. The spatio-temporal arrangement of these micro-earthquakes can be used to characterize frictional properties at the ice-bed interface of Rutford Ice Stream.





This work was funded within the BEAMISH project by NERC AFI award numbers NE/G014159/1 and NE/G013187/1. Seismic instruments were provided by NERC SEIS-UK (Loan 1017) and the Incorporated Research Institutions for Seismology (IRIS) through the PASSCAL Instrument Center at New Mexico Tech.

Simple

Date (Creation)
2020-11-13
Date (Revision)
2020-11-13
Date (Publication)
2020-11-13
Date (released)
2020-11-13
Edition

1.0

Unique resource identifier
https://doi.org/10.5285/b809a040-8305-4bc5-baff-76aa2b823734
Codespace

doi

Unique resource identifier
GB/NERC/BAS/PDC/01432
Codespace

https://data.bas.ac.uk/

Unique resource identifier
NE/G014159/1
Codespace

award

Unique resource identifier
NE/G013187/1
Codespace

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Other citation details

Please cite this item as: Kufner, S., Brisbourne, A., Smith, A., Hudson, T., Murray, T., Schlegel, R., Kendall, J., Anandakrishnan, S., & Lee, I. (2020). Microseismic icequake catalogue, Rutford Ice Stream (West Antarctica), November 2018 to February 2019 (Version 1.0) [Data set]. UK Polar Data Centre, Natural Environment Research Council, UK Research & Innovation. https://doi.org/10.5285/b809a040-8305-4bc5-baff-76aa2b823734

Credit

No credit.

Status
Completed
Point of contact
Organisation name Individual name Electronic mail address Role
British Antarctic Survey Kufner, Sofia-Katerina Author
British Antarctic Survey Brisbourne, Alex Author
British Antarctic Survey Smith, Andrew Author

University of Oxford

Hudson, Thomas Author

Swansea University

Murray, Tavi Author

Swansea University

Schlegel, Rebecca Author

University of Oxford

Kendall, John Author

Pennsylvania State University

Anandakrishnan, Sridhar Author

Pennsylvania State University

Lee, Ian Author
NERC EDS UK Polar Data Centre

PDCServiceDesk@bas.ac.uk

Point of contact
Maintenance and update frequency
As needed
Maintenance note
Completed
Global Change Master Directory (GCMD) Science Keywords
  • EARTH SCIENCE > Cryosphere > Glaciers/Ice Sheets > Glacier Motion/Ice Sheet Motion
  • EARTH SCIENCE > Cryosphere > Glaciers/Ice Sheets
  • EARTH SCIENCE > Solid Earth > Seismology
Theme
  • BEAMISH

  • West Antarctica

  • glacier bed

  • ice stream

  • icequake

  • microseismicity

Place
  • Rutford Ice Stream Antarctica

GEMET - INSPIRE themes, version 1.0

  • Elevation
  • Geology
Access constraints
Other restrictions
Other constraints
no limitations to public access
Access constraints
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Other constraints
no limitations
Use constraints
License
Other constraints
Open Government Licence v3.0
Use constraints
Other restrictions
Other constraints

This data is supplied under Open Government Licence v3.0

Use constraints
Other restrictions
Other constraints

No restrictions apply.

Unique resource identifier
url
Codespace

url

Association Type
Larger work citation
Unique resource identifier
doi
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doi

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Cross reference
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doi

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doi
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doi

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doi
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doi

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doi
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doi

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doi
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doi

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doi
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doi

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doi
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doi

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doi
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doi

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url
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url

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url
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url

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dependency
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url
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url

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dependency
Unique resource identifier
url
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url

Association Type
dependency
Spatial representation type
Text, table
Language
English
Character set
UTF8
Topic category
  • Geoscientific information
N
S
E
W
thumbnail




Begin date
2018-11-20
End date
2019-02-16

Vertical extent

Minimum value
0.304
Maximum value
0.359

Vertical CS

No information provided.

Vertical datum

No information provided.
Supplemental Information

It is recommended that careful attention be paid to the contents of any data, and that the author be contacted with any questions regarding appropriate use. If you find any errors or omissions, please report them to polardatacentre@bas.ac.uk.

Title

European Petroleum Survey Group (EPSG) Geodetic Parameter Registry

Date (Publication)
2008-11-12
Cited responsible party
Organisation name Individual name Electronic mail address Role

European Petroleum Survey Group

EPSGadministrator@iogp.org

Publisher
Unique resource identifier
urn:ogc:def:crs:EPSG::3031
Version

6.18.3

Distributor

Distributor contact
Organisation name Individual name Electronic mail address Role
NERC EDS UK Polar Data Centre

PDCServiceDesk@bas.ac.uk

Distributor
Distributor format
Name Version
text/plain
Units of distribution

bytes

Transfer size
58720256
OnLine resource
Protocol Linkage Name

WWW:LINK-1.0-http--link

https://ramadda.data.bas.ac.uk/repository/entry/show?entryid=b809a040-8305-4bc5-baff-76aa2b823734

Get Data

Hierarchy level
Dataset
Statement

Methodology:

Event locations were gained from the continuous passive seismic records using the QuakeMigrate (Hudson et al., 2019; J. D. Smith et al., 2020) and Nonlinloc (Lomax et al., 2000) software. A two-layer velocity model (firn layer above an ice layer) according to E. C. Smith et al. (2015) was used in the Nonlinloc location step. Based on Nonlinloc locations, we accept only events with a total root-mean-square (RMS) value of 0.02 s, a maximum azimuthal gap of 280 degrees, maximum 10% of picks with a P/S residual larger than 0.02 s/0.2 s and at least 3 P picks and 2 S picks for the final event catalogue.





We account for the movement of the seismic stations relative to the bed due to ice flow by shifting each event in the final catalogue downstream. Rutford Ice Stream moved ~94 m downstream during the 90 day survey period, whereas our stations are specified at fixed locations during event location, clearly evidencing the necessity for such a shift. We perform this shift by calculating the stations' locations at the time of each individual event relative to the start of the deployment, using their GPS locations, and apply this lateral shift to that event hypocenter. This is repeated for all events in the catalogue to compensate for ice flow.





Magnitudes were calculated from the far-field displacement of the P-wave (Mw; Shearer (2009); implementation of Hudson (2019)) for a 1-day data subset. A local magnitude scale (ML) was then derived based on these Mw values. The local magnitude scale follows the equation:





ML = log10(A) + m x depi - t





where A is the maximum amplitude of either of the two horizontal components (in instrument counts corrected for the instrument type). The distance term m accounts for the decay of amplitudes with increasing epicentral distance, depi is the epicentral distance and t is a scaling parameter that bridges the offset between Mw and ML.





Focal mechanisms were calculated from first motion polarities and P to S- amplitude ratios using the HASH software (Hardebeck & Shearer, 2002, 2003). The final set of good solutions is derived based on quality criteria, which are the stability of solution upon variations of input, the azimuthal gap of the final set of stations (should be smaller than 180 degrees) used and the final number of input picks (should be larger than seven).





Detailed information on catalogue creation will be contained in Kufner et al. (in prep.).

Data collection:

Instrumentation:





Each station of the seismic network consisted of a Reftek RT-130 data logger with a 4.5 Hz 3-component geophone (either GS11-3D or L28-3D), which was buried to ~1 m depth. The sampling frequency was set to 1000 Hz. Energy supply was ensured through a solar panel and batteries. Timing was obtained from an attached GPS antenna.





Software:





Event detection from continuous data: QuakeMigrate ( https://github.com/QuakeMigrate/QuakeMigrate); October 2019-Version



Event relocation: Nonlinloc ( http://alomax.free.fr/nlloc/); Version 4, including updates until 2017



First motion focal mechanisms: HASH ( https://www.usgs.gov/software/hash-12); Version 1.2, January 2008

Data quality:

See Lineage for quality restrictions applied to the event hypocenters and focal mechanisms. Location errors are given directly in the data file.

Metadata

File identifier
b809a040-8305-4bc5-baff-76aa2b823734 XML
Metadata language
English
Character set
UTF8
Hierarchy level
Dataset
Hierarchy level name

dataset

Date stamp
2020-11-13
Metadata standard name

ISO 19115 Geographic Information - Metadata

Metadata standard version

ISO 19115:2003(E)

Metadata author
Organisation name Individual name Electronic mail address Role
NERC EDS UK Polar Data Centre

polardatacentre@bas.ac.uk

Point of contact
 
 

Overviews

Spatial extent

thumbnail

Keywords

BEAMISH West Antarctica glacier bed ice stream icequake microseismicity
GEMET - INSPIRE themes, version 1.0

Elevation Geology
Global Change Master Directory (GCMD) Science Keywords

EARTH SCIENCE > Cryosphere > Glaciers/Ice Sheets EARTH SCIENCE > Cryosphere > Glaciers/Ice Sheets > Glacier Motion/Ice Sheet Motion EARTH SCIENCE > Solid Earth > Seismology


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