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Journal Article

Energy balance closure and advective fluxes at ADVEX sites

Uta Moderow; Thomas Grünwald; Ronald Queck; Uwe Spank; Christian Bernhofer
Theoretical and Applied Climatology · Vol. 143, Issue 1-2 · pp. 761-779 · 2021

Abstract

When measuring the energy balance at the earth’s surface using the Eddy covariance technique, the obtained budgets seldom produce a closed energy balance. The measurements often miss some of the energy fluxes. A possible reason is the neglect of non-turbulent surface fluxes of latent heat and sensible heat, i.e. advective fluxes of these quantities. We present estimates of advective latent and sensible heat fluxes for three different sites across Europe based on the ADVEX dataset. The obtained horizontal and vertical advective fluxes were site-specific and characterized by large scatter. In relative terms, the data indicated that the sensible heat budget was less affected by advection than the latent heat budget during nighttime; this is because vertical turbulent latent heat fluxes were very small or close to zero during the night. The results further showed that the additional energy gain by sensible heat advection might have triggered enhanced evaporation for two sites during nighttime. Accounting for advective fluxes improved the energy balance closure for one of the three ADVEX sites. However, the energy balance closure of the other two sites did not improve overall. A comparison with energy balance residuals (energy missed by the measurements without accounting for advection) indicated a large influence of systematic errors. An inspection of the energy balance for the sloped site of the ADVEX dataset underlined the necessity of slope-parallel measurement of radiation.

Bibliographic Information

JournalTheoretical and Applied Climatology
PublisherSpringer
Publication Date2021-01-01
Publication Year2021
Volume143
Issue1-2
Pages761-779
Document TypeJournal Article
Print ISSN0177-798X
eISSN1434-4483
DOI10.1007/s00704-020-03412-z

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NARA Access Coverage1948-01-01~Current
Journal Homepagehttps://www.springer.com/journal/704
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