Modeling of land–surface interactions in the PALM model system 6.0: land surface model description, first evaluation, and sensitivity to model parameters

<p>In this paper the land surface model embedded in the PALM model system is described and evaluated against in situ measurements at Cabauw, Netherlands. A total of 2 consecutive clear-sky days are simulated, and the components of surface energy balance, potential temperature, humidity, and ho...

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Main Authors: K. F. Gehrke, M. Sühring, B. Maronga
Format: Article
Language:English
Published: Copernicus Publications 2021-08-01
Series:Geoscientific Model Development
Online Access:https://gmd.copernicus.org/articles/14/5307/2021/gmd-14-5307-2021.pdf
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spelling doaj-4e20b8e53a284e3299e103c21ddcca3a2021-08-23T11:42:36ZengCopernicus PublicationsGeoscientific Model Development1991-959X1991-96032021-08-01145307532910.5194/gmd-14-5307-2021Modeling of land–surface interactions in the PALM model system 6.0: land surface model description, first evaluation, and sensitivity to model parametersK. F. Gehrke0M. Sühring1B. Maronga2B. Maronga3Leibniz University Hannover, Institute of Meteorology and Climatology, Hanover, GermanyLeibniz University Hannover, Institute of Meteorology and Climatology, Hanover, GermanyLeibniz University Hannover, Institute of Meteorology and Climatology, Hanover, GermanyUniversity of Bergen, Geophysical Institute, Bergen, Norway<p>In this paper the land surface model embedded in the PALM model system is described and evaluated against in situ measurements at Cabauw, Netherlands. A total of 2 consecutive clear-sky days are simulated, and the components of surface energy balance, potential temperature, humidity, and horizontal wind speed are compared to observations. For the simulated period, components of the energy balance are consistent with daytime and nighttime observations, and the daytime Bowen ratio also agrees fairly well with observations. The model simulates a more stably stratified nocturnal boundary layer than the observations, and near-surface potential temperature and humidity agree fairly well during the day. Moreover, a sensitivity analysis is performed to investigate dependence of the model on land surface and soil specifications, as well as atmospheric initial conditions, because they represent a major source of uncertainty in the simulation setup. It is found that an inaccurate estimation of leaf area index, albedo, or initial humidity causes a significant misrepresentation of the daytime turbulent sensible and latent heat fluxes. During the night, the boundary-layer characteristics are primarily affected by surface roughness and the applied radiation schemes.</p>https://gmd.copernicus.org/articles/14/5307/2021/gmd-14-5307-2021.pdf
collection DOAJ
language English
format Article
sources DOAJ
author K. F. Gehrke
M. Sühring
B. Maronga
B. Maronga
spellingShingle K. F. Gehrke
M. Sühring
B. Maronga
B. Maronga
Modeling of land–surface interactions in the PALM model system 6.0: land surface model description, first evaluation, and sensitivity to model parameters
Geoscientific Model Development
author_facet K. F. Gehrke
M. Sühring
B. Maronga
B. Maronga
author_sort K. F. Gehrke
title Modeling of land–surface interactions in the PALM model system 6.0: land surface model description, first evaluation, and sensitivity to model parameters
title_short Modeling of land–surface interactions in the PALM model system 6.0: land surface model description, first evaluation, and sensitivity to model parameters
title_full Modeling of land–surface interactions in the PALM model system 6.0: land surface model description, first evaluation, and sensitivity to model parameters
title_fullStr Modeling of land–surface interactions in the PALM model system 6.0: land surface model description, first evaluation, and sensitivity to model parameters
title_full_unstemmed Modeling of land–surface interactions in the PALM model system 6.0: land surface model description, first evaluation, and sensitivity to model parameters
title_sort modeling of land–surface interactions in the palm model system 6.0: land surface model description, first evaluation, and sensitivity to model parameters
publisher Copernicus Publications
series Geoscientific Model Development
issn 1991-959X
1991-9603
publishDate 2021-08-01
description <p>In this paper the land surface model embedded in the PALM model system is described and evaluated against in situ measurements at Cabauw, Netherlands. A total of 2 consecutive clear-sky days are simulated, and the components of surface energy balance, potential temperature, humidity, and horizontal wind speed are compared to observations. For the simulated period, components of the energy balance are consistent with daytime and nighttime observations, and the daytime Bowen ratio also agrees fairly well with observations. The model simulates a more stably stratified nocturnal boundary layer than the observations, and near-surface potential temperature and humidity agree fairly well during the day. Moreover, a sensitivity analysis is performed to investigate dependence of the model on land surface and soil specifications, as well as atmospheric initial conditions, because they represent a major source of uncertainty in the simulation setup. It is found that an inaccurate estimation of leaf area index, albedo, or initial humidity causes a significant misrepresentation of the daytime turbulent sensible and latent heat fluxes. During the night, the boundary-layer characteristics are primarily affected by surface roughness and the applied radiation schemes.</p>
url https://gmd.copernicus.org/articles/14/5307/2021/gmd-14-5307-2021.pdf
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AT bmaronga modelingoflandsurfaceinteractionsinthepalmmodelsystem60landsurfacemodeldescriptionfirstevaluationandsensitivitytomodelparameters
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