Webbläsaren som du använder stöds inte av denna webbplats. Alla versioner av Internet Explorer stöds inte längre, av oss eller Microsoft (läs mer här: * https://www.microsoft.com/en-us/microsoft-365/windows/end-of-ie-support).

Var god och använd en modern webbläsare för att ta del av denna webbplats, som t.ex. nyaste versioner av Edge, Chrome, Firefox eller Safari osv.

Tobias Biermann. Foto.

Tobias Biermann

Forskningsingenjör

Tobias Biermann. Foto.

Turbulent flux modelling with a simple 2-layer soil model and extrapolated surface temperature applied at Nam Co Lake basin on the Tibetan Plateau

Författare

  • T. Gerken
  • W. Babel
  • A. Hoffmann
  • T. Biermann
  • M. Herzog
  • A. D. Friend
  • M. Li
  • Y. Ma
  • T. Foken
  • H. F. Graf

Summary, in English

This paper introduces a surface model with two soil-layers for use in a high-resolution circulation model that has been modified with an extrapolated surface temperature, to be used for the calculation of turbulent fluxes. A quadratic temperature profile based on the layer mean and base temperature is assumed in each layer and extended to the surface. The model is tested at two sites on the Tibetan Plateau near Nam Co Lake during four days during the 2009 Monsoon season. In comparison to a two-layer model without explicit surface temperature estimate, there is a greatly reduced delay in diurnal flux cycles and the modelled surface temperature is much closer to observations. Comparison with a SVAT model and eddy covariance measurements shows an overall reasonable model performance based on RMSD and cross correlation comparisons between the modified and original model. A potential limitation of the model is the need for careful initialisation of the initial soil temperature profile, that requires field measurements. We show that the modified model is capable of reproducing fluxes of similar magnitudes and dynamics when compared to more complex methods chosen as a reference.

Publiceringsår

2012

Språk

Engelska

Sidor

1095-1110

Publikation/Tidskrift/Serie

Hydrology and Earth System Sciences

Volym

16

Issue

4

Dokumenttyp

Artikel i tidskrift

Förlag

European Geophysical Society

Ämne

  • Geosciences, Multidisciplinary

Status

Published

ISBN/ISSN/Övrigt

  • ISSN: 1027-5606