Natascha Kljun
Professor
A simple two-dimensional parameterisation for Flux Footprint Prediction (FFP)
Author
Summary, in English
To remedy such shortcomings, we present the two-dimensional parameterisation for Flux Footprint Prediction (FFP), based on a novel scaling approach for the crosswind distribution of the flux footprint and on an improved version of the footprint parameterisation of Kljun et al. (2004b). Compared to the latter, FFP now provides not only the extent but also the width and shape of footprint estimates, and explicit consideration of the effects of the surface roughness length. The footprint parameterisation has been developed and evaluated using simulations of the backward Lagrangian stochastic particle dispersion model LPDM-B (Kljun et al., 2002). Like LPDM-B, the parameterisation is valid for a broad range of boundary layer conditions and measurement heights over the entire planetary boundary layer. Thus, it can provide footprint estimates for a wide range of real-case applications.
The new footprint parameterisation requires input that can be easily determined from, for example, flux tower measurements or airborne flux data. FFP can be applied to data of long-term monitoring programmes as well as be used for quick footprint estimates in the field, or for designing new sites.
Publishing year
2015
Language
English
Pages
3695-3713
Publication/Series
Geoscientific Model Development
Volume
8
Issue
11
Document type
Article
Publisher
Copernicus GmbH
Topic
- Multidisciplinary Geosciences
Keywords
- SDG 15 - Life on Land
Status
Published
ISBN/ISSN/Other
- ISSN: 1991-959X