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Intercomparison and assessment of turbulent and physiological exchange parameters of grassland

Nemitz, E; Hargreaves, K J; Neftel, A; Loubet, B; Cellier, P; Dorsey, J R; Flynn, M; Hensen, A; Weidinger, T; Meszaros, R; Horvath, L; Daemmgen, U; Fruehauf, C; Loepmeier, F J; Gallagher, M W; Sutton, M A

Biogeosciences. 2009;6(8):1445-1466.

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Abstract

Commonly, the micrometeorological parameters that underline the calculations of surface atmosphere exchange fluxes (e.g. friction velocity and sensible heat flux) and parameters used to model exchange fluxes with SVAT-type parameterisations (e.g. latent heat flux and canopy temperature) are measured with a single set of instrumentation and are analysed with a single methodology. This paper evaluates uncertainties in these measurements with a single instrument, by comparing the independent results from nine different institutes during the international GRAMINAE integrated field experiment over agricultural grassland near Braunschweig, Lower Saxony, Germany. The paper discusses uncertainties in measuring friction velocity, sensible and latent heat fluxes, canopy temperature and investigates the energy balance closure at this site. Although individual 15-min flux calculations show a large variability between the instruments, when averaged over the campaign, fluxes agree within 2% for momentum and 11% for sensible heat. However, the spread in estimates of latent heat flux (lambda E) is larger, with standard deviations of averages of 18%. The dataset averaged over the different instruments fails to close the energy budget by 20%, significantly larger than the uncertainties in the individual flux corrections. However, if the largest individual turbulent flux estimates are considered, energy closure can be achieved, indicating that the closure gap is within the spread of the measurements. The uncertainty in lambda E feeds results in an uncertainty in the bulk stomatal resistance, which further adds to the uncertainties in the estimation of the canopy temperature that controls the exchange. The paper demonstrated how a consensus dataset was derived, which is used by the individual investigators to calculate fluxes and drive their models.

Bibliographic metadata

Type of resource:
Content type:
Published date:
Journal title:
ISSN:
Volume:
6
Issue:
8
Start page:
1445
End page:
1466
Total:
22
Pagination:
1445-1466
Digital Object Identifier:
10.5194/bg-6-1445-2009
ISI Accession Number:
WOS:000269405000006
Related website(s):
  • Related website <Go to ISI>://WOS:000269405000006
General notes:
  • Times Cited: 13
Access state:
Active

Institutional metadata

University researcher(s):

Record metadata

Manchester eScholar ID:
uk-ac-man-scw:164220
Created by:
Taylor, Scott
Created:
4th July, 2012, 09:15:39
Last modified by:
Taylor, Scott
Last modified:
4th July, 2012, 09:15:39

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