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Ejective and Sweeping Motions Above a Peatland and Their Role in Relaxed-Eddy-Accumulation Measurements and Turbulent Transport Modelling

Publication ,  Journal Article
Katul, G; Peltola, O; Grönholm, T; Launiainen, S; Mammarella, I; Vesala, T
Published in: Boundary-Layer Meteorology
November 1, 2018

The three turbulent velocity components, water vapour (H 2O ), carbon dioxide (CO 2), and methane (CH 4) concentration fluctuations are measured above a boreal peatland and analyzed using conditional sampling and quadrant analysis. The overarching question to be addressed is to what degree lower-order cumulant expansion methods describe transport efficiency and the relative importance of ejections and sweeps to momentum, CH 4, CO 2 and H 2O fluxes across a range of atmospheric flow regimes. The patchy peatland surface creates distinctly different source and sink distributions for the three scalars in space and time thereby adding to the uniqueness of the set-up. The measured and modelled fractional contributions to the momentum flux show that sweep events dominate over ejections in agreement with prior studies conducted in the roughness sublayer. For scalar fluxes, ejections dominate the turbulent fluxes over sweeps. While ejective motions persist longer for momentum transport, sweeping events persist longer for all three scalars. Third-order cumulant expansions describe many of the results detailed above, and the results are surprising given the highly non-Gaussian distribution of CH 4 turbulent fluctuations. Connections between the asymmetric contributions of sweeps and ejections and the flux-transport term arising in scalar turbulent-flux-budget closure are derived and shown to agree reasonably well with measurements. The proposed model derived here is much simpler than prior structural models used to describe laboratory experiments. Implications of such asymmetric contributions on, (i) the usage of the now proliferating relaxed-eddy-accumulation method in turbulent flux measurements, (ii) the constant-flux assumption, and (iii) gradient-diffusion closure models are presented.

Duke Scholars

Published In

Boundary-Layer Meteorology

DOI

EISSN

1573-1472

ISSN

0006-8314

Publication Date

November 1, 2018

Volume

169

Issue

2

Start / End Page

163 / 184

Related Subject Headings

  • Meteorology & Atmospheric Sciences
  • 3701 Atmospheric sciences
  • 0401 Atmospheric Sciences
 

Citation

APA
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ICMJE
MLA
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Katul, G., Peltola, O., Grönholm, T., Launiainen, S., Mammarella, I., & Vesala, T. (2018). Ejective and Sweeping Motions Above a Peatland and Their Role in Relaxed-Eddy-Accumulation Measurements and Turbulent Transport Modelling. Boundary-Layer Meteorology, 169(2), 163–184. https://doi.org/10.1007/s10546-018-0372-4
Katul, G., O. Peltola, T. Grönholm, S. Launiainen, I. Mammarella, and T. Vesala. “Ejective and Sweeping Motions Above a Peatland and Their Role in Relaxed-Eddy-Accumulation Measurements and Turbulent Transport Modelling.” Boundary-Layer Meteorology 169, no. 2 (November 1, 2018): 163–84. https://doi.org/10.1007/s10546-018-0372-4.
Katul G, Peltola O, Grönholm T, Launiainen S, Mammarella I, Vesala T. Ejective and Sweeping Motions Above a Peatland and Their Role in Relaxed-Eddy-Accumulation Measurements and Turbulent Transport Modelling. Boundary-Layer Meteorology. 2018 Nov 1;169(2):163–84.
Katul, G., et al. “Ejective and Sweeping Motions Above a Peatland and Their Role in Relaxed-Eddy-Accumulation Measurements and Turbulent Transport Modelling.” Boundary-Layer Meteorology, vol. 169, no. 2, Nov. 2018, pp. 163–84. Scopus, doi:10.1007/s10546-018-0372-4.
Katul G, Peltola O, Grönholm T, Launiainen S, Mammarella I, Vesala T. Ejective and Sweeping Motions Above a Peatland and Their Role in Relaxed-Eddy-Accumulation Measurements and Turbulent Transport Modelling. Boundary-Layer Meteorology. 2018 Nov 1;169(2):163–184.
Journal cover image

Published In

Boundary-Layer Meteorology

DOI

EISSN

1573-1472

ISSN

0006-8314

Publication Date

November 1, 2018

Volume

169

Issue

2

Start / End Page

163 / 184

Related Subject Headings

  • Meteorology & Atmospheric Sciences
  • 3701 Atmospheric sciences
  • 0401 Atmospheric Sciences