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Diurnal Footprints for Zurich-Hardau at 30-min resolution - 2022-11-22

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2022-11-22

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Latest version(s): tqjtc-TYrvM9RJTLNBfTyBlm
11676/f0SIErSGCDvlEH43pvj317W8 (link)

NOTE: This data object has been deprecated because the spatial coordinates of the calculated footprints contain errors. Do not use.

This file contains flux footprints for the Zurich-Hardau flux-tower in Switzerland at 30-minute temporal resolution. The filename includes the date of all footprints contained. Each file contains up to 48 footprints with the following variables each: Time, X, Y, Boundary Layer Height Quality Flag, and Footprint Climatology. The flux footprints are computed using FFP as described in Kljun et al. (2015), https://doi.org/10.5194/gmd‐8‐3695‐2015, at 10-meter spatial resolution.

This work is part of the ICOS Cities/PAUL Pilot Applications in Urban Landscapes project.

2022-11-22 00:30:00
2022-11-22 23:30:00
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Molinier, B., Kljun, N. (2024). Diurnal Footprints for Zurich-Hardau at 30-min resolution - 2022-11-22, 2022-11-22, ICOS Cities, https://hdl.handle.net/11676/f0SIErSGCDvlEH43pvj317W8
BibTex
@misc{https://hdl.handle.net/11676/f0SIErSGCDvlEH43pvj317W8,
  author={Molinier, Betty and Kljun, Natascha},
  title={Diurnal Footprints for Zurich-Hardau at 30-min resolution - 2022-11-22, 2022-11-22},
  year={2024},
  note={NOTE: This data object has been deprecated because the spatial coordinates of the calculated footprints contain errors. Do not use.

This file contains flux footprints for the Zurich-Hardau flux-tower in Switzerland at 30-minute temporal resolution. The filename includes the date of all footprints contained. Each file contains up to 48 footprints with the following variables each: Time, X, Y, Boundary Layer Height Quality Flag, and Footprint Climatology. The flux footprints are computed using FFP as described in Kljun et al. (2015), https://doi.org/10.5194/gmd‐8‐3695‐2015, at 10-meter spatial resolution.

This work is part of the ICOS Cities/PAUL Pilot Applications in Urban Landscapes project.
},
  keywords={Flux footprints, atmospheric modelling, urban flux, ICOS Cities},
  url={https://hdl.handle.net/11676/f0SIErSGCDvlEH43pvj317W8},
  publisher={Carbon Portal},
  copyright={http://meta.icos-cp.eu/ontologies/cpmeta/icosLicence},
  pid={11676/f0SIErSGCDvlEH43pvj317W8}
}
RIS
TY - DATA
T1 - Diurnal Footprints for Zurich-Hardau at 30-min resolution - 2022-11-22, 2022-11-22
ID - 11676/f0SIErSGCDvlEH43pvj317W8
PY - 2024
AB - NOTE: This data object has been deprecated because the spatial coordinates of the calculated footprints contain errors. Do not use.

This file contains flux footprints for the Zurich-Hardau flux-tower in Switzerland at 30-minute temporal resolution. The filename includes the date of all footprints contained. Each file contains up to 48 footprints with the following variables each: Time, X, Y, Boundary Layer Height Quality Flag, and Footprint Climatology. The flux footprints are computed using FFP as described in Kljun et al. (2015), https://doi.org/10.5194/gmd‐8‐3695‐2015, at 10-meter spatial resolution.

This work is part of the ICOS Cities/PAUL Pilot Applications in Urban Landscapes project.

UR - https://hdl.handle.net/11676/f0SIErSGCDvlEH43pvj317W8
PB - Carbon Portal
AU - Molinier, Betty
AU - Kljun, Natascha
KW - Flux footprints
KW - atmospheric modelling
KW - urban flux
KW - ICOS Cities
ER - 
zurich_footprint_221122.nc
65 MB (68482475 bytes)
3

Acquisition

2022-11-22 00:30:00
2022-11-22 23:30:00

Production

2024-06-24 11:00:00

Statistics

4

Submission

2024-06-27 10:48:27
2024-06-27 10:43:40

Technical information

7f448812b486083be5107e37a6f8f7d7b5bcd05bc965a9bb52ed0c5e1f0e387b
f0SIErSGCDvlEH43pvj317W80FvJZam7Uu0MXh8OOHs
[(Lat: 47.32634, Lon: 8.429202), (Lat: 47.436353, Lon: 8.429202), (Lat: 47.436353, Lon: 8.591174), (Lat: 47.32634, Lon: 8.591174)]
Flux footprints ICOS Cities atmospheric modelling urban flux
3 pilot cities
15 countries
15 cities
30 scientific partners
13M€ funding
2021-2025
EU flag PAUL, Pilot Applications in Urban Landscapes - Towards integrated city observatories for greenhouse gases (ICOS Cities), has received funding from the European Union’s Horizon 2020 Research and Innovation Programme under grant agreement No 101037319.