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Nigg, Valentin; Bacigaluppi, Paola; Vetsch, David F; Vogel, Hendrik; Kremer, Katrina; Anselmetti, Flavio S (2021): Interpolated Lake Bathymetry of Lake Lucerne [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.938756, In: Nigg, V et al. (2021): Shallow-Water Tsunami Deposits: Evidence from Sediment Cores and Wave Propagation of the 1601 CE Lake Lucerne Event [dataset bundled publication]. PANGAEA, https://doi.org/10.1594/PANGAEA.938716

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Published: 2021-12-01DOI registered: 2021-12-09

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Abstract:
This dataset provides the interpolated bathymetry of Lake Lucerne used for the numerical wave propagation simulation performed in the study “Shallow-Water Tsunami Deposits: Evidence from Sediment Cores and Numerical Wave Propagation of the 1601 CE Lake Lucerne” by Nigg et al. (in review). The multibeam echo-sounder bathymetry dataset of Lake Lucerne acquired by Hibe et al. (2011) was resampled from a grid size of 1x1 m to 5x5 m to reduce computational time using ArcMap (version 10.8.1). In addition, large artificial shoreline modifications were cropped and interpolated based on historical maps. Shallow-water areas (water depth 0-4m), which are not entirely covered by the bathymetrical data were linearly interpolated to the shoreline.
The original bathymetry was acquired using a Geo-Acoustics GeoSwath Plus 125 kHz interferometer by Hilbe et al. (2011). Positioning was acquired with a Leica SR 530 GPS receiver with real time kinematic positioning (RTK; swipos GIS/GEO from swisstopo). Acquisition control and data processing were conducted using the GeoAcoustics GS+ software package. Swiss basic hydrological monitoring network (BAFU, 2008) were used to normalize water depths to the mean lake level (433.6 m a.s.l.). See Hilbe et al. (2011) for further information. The original bathymetry dataset is available from swisstopo and should be referenced as Hilbe, M., Anselmetti, F. S., Eilertsen, R. S., Hansen, L., & Wildi, W. (2011). Subaqueous morphology of Lake Lucerne (Central Switzerland): implications for mass movements and glacial history. Swiss Journal of Geosciences, 104(3), 425-443.
Related to:
Nigg, Valentin; Bacigaluppi, Paola; Vetsch, David F; Vogel, Hendrik; Kremer, Katrina; Anselmetti, Flavio S (2021): Shallow‐Water Tsunami Deposits: Evidence From Sediment Cores and Numerical Wave Propagation of the 1601 CE Lake Lucerne Event. Geochemistry, Geophysics, Geosystems, 22(12), https://doi.org/10.1029/2021GC009753
Source:
Hilbe, Michael; Anselmetti, Flavio S; Eilertsen, Raymond S; Hansen, L; Wildi, Walter (2011): Subaqueous morphology of Lake Lucerne (Central Switzerland): implications for mass movements and glacial history. Swiss Journal of Geosciences, 104(3), 425-443, https://doi.org/10.1007/s00015-011-0083-z
Coverage:
Latitude: 47.024316 * Longitude: 8.437271
Date/Time Start: 2007-10-01T00:00:00 * Date/Time End: 2007-10-01T00:00:00
Event(s):
LU_Bathymetry * Latitude: 47.024316 * Longitude: 8.437271 * Date/Time: 2007-10-01T00:00:00 * Location: Lake Lucerne, Switzerland * Method/Device: Multiple investigations (MULT) * Comment: Shallow-water areas (water depth 0-4m) are linearly interpolated to the shoreline (not measured with multibeam echosounder device) & shoreline modified based on historical charts
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
1Binary ObjectBinaryNigg, Valentin
2Binary Object (Media Type)Binary (Type)Nigg, Valentin
3Binary Object (File Size)Binary (Size)BytesNigg, Valentin
4Raster cell sizeRaster cell sizeNigg, Valentin
5File contentContentNigg, Valentin
6Vertical datumVertical datumNigg, Valentin
7Horizontal datumHorizontal datumNigg, Valentin
8Longitude, westboundLongitude westNigg, Valentin
9Longitude, eastboundLongitude eastNigg, Valentin
10Latitude, southboundLatitude southNigg, Valentin
11Latitude, northboundLatitude northNigg, Valentin
12AreaAreakm2Nigg, Valentin
13Elevation, minimumElev minm a.s.l.Nigg, Valentin
14Elevation, maximumElev maxm a.s.l.Nigg, Valentin
Status:
Curation Level: Enhanced curation (CurationLevelC)
Size:
12 data points

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