ICOS

Diurnal Footprints for Paris-Romainville at 30-min resolution - 2023-03-26

Download
2023-03-26

Deprecated data

Latest version: pCESJYJO_LkWv8RkunjA-W-H
11676/PvO3HobsaC4u0NBx_2g7TJxR (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 Paris-Romainville flux-tower in France 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.

In this version, footprints have been calculated using the updated ETC NRT Flux dataset for Romainville from 12.11.2024, which was reprocessed to correct for an azimuth angle issue.
2023-03-26 00:00:00
2023-03-26 23:30:00
half-hourly
Molinier, B., Kljun, N. (2024). Diurnal Footprints for Paris-Romainville at 30-min resolution - 2023-03-26, 2023-03-26, ICOS Cities, https://hdl.handle.net/11676/PvO3HobsaC4u0NBx_2g7TJxR
BibTex
@misc{https://hdl.handle.net/11676/PvO3HobsaC4u0NBx_2g7TJxR,
  author={Molinier, Betty and Kljun, Natascha},
  title={Diurnal Footprints for Paris-Romainville at 30-min resolution - 2023-03-26, 2023-03-26},
  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 Paris-Romainville flux-tower in France 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/PvO3HobsaC4u0NBx_2g7TJxR},
  publisher={Carbon Portal},
  copyright={http://meta.icos-cp.eu/ontologies/cpmeta/icosLicence},
  pid={11676/PvO3HobsaC4u0NBx_2g7TJxR}
}
RIS
TY - DATA
T1 - Diurnal Footprints for Paris-Romainville at 30-min resolution - 2023-03-26, 2023-03-26
ID - 11676/PvO3HobsaC4u0NBx_2g7TJxR
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 Paris-Romainville flux-tower in France 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/PvO3HobsaC4u0NBx_2g7TJxR
PB - Carbon Portal
AU - Molinier, Betty
AU - Kljun, Natascha
KW - Flux footprints
KW - atmospheric modelling
KW - urban flux
KW - ICOS Cities
ER - 
paris_footprint_230326.nc
86 MB (90220840 bytes)
3

Acquisition

2023-03-26 00:00:00
2023-03-26 23:30:00

Production

2024-12-02 11:00:00

Statistics

3

Submission

2024-12-04 14:40:33
2024-12-04 14:39:30

Technical information

3ef3b71e86ec682e2ed0d071ff683b4c9c5169f08810ebf643573910b6ad0cf7
PvO3HobsaC4u0NBx/2g7TJxRafCIEOv2Q1c5ELatDPc
[(Lat: 48.813187, Lon: 2.313349), (Lat: 48.956981, Lon: 2.313349), (Lat: 48.956981, Lon: 2.531389), (Lat: 48.813187, Lon: 2.531389)]
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.