Vegetation in Drylands: Effects on Wind Flow and Aeolian Sediment Transport

Drylands are characterised by patchy vegetation, erodible surfaces and erosive aeolian processes. Empirical and modelling studies have shown that vegetation elements provide drag on the overlying airflow, thus affecting wind velocity profiles and altering erosive dynamics on desert surfaces. However...

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Main Authors: Jerome R. Mayaud, Nicholas P. Webb
Format: Article
Language:English
Published: MDPI AG 2017-09-01
Series:Land
Subjects:
Online Access:https://www.mdpi.com/2073-445X/6/3/64
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author Jerome R. Mayaud
Nicholas P. Webb
author_facet Jerome R. Mayaud
Nicholas P. Webb
author_sort Jerome R. Mayaud
collection DOAJ
description Drylands are characterised by patchy vegetation, erodible surfaces and erosive aeolian processes. Empirical and modelling studies have shown that vegetation elements provide drag on the overlying airflow, thus affecting wind velocity profiles and altering erosive dynamics on desert surfaces. However, these dynamics are significantly complicated by a variety of factors, including turbulence, and vegetation porosity and pliability effects. This has resulted in some uncertainty about the effect of vegetation on sediment transport in drylands. Here, we review recent progress in our understanding of the effects of dryland vegetation on wind flow and aeolian sediment transport processes. In particular, wind transport models have played a key role in simplifying aeolian processes in partly vegetated landscapes, but a number of key uncertainties and challenges remain. We identify potential future avenues for research that would help to elucidate the roles of vegetation distribution, geometry and scale in shaping the entrainment, transport and redistribution of wind-blown material at multiple scales. Gaps in our collective knowledge must be addressed through a combination of rigorous field, wind tunnel and modelling experiments.
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spelling doaj.art-6f3d77623f17436db924c8d32c3053eb2022-12-21T18:46:00ZengMDPI AGLand2073-445X2017-09-01636410.3390/land6030064land6030064Vegetation in Drylands: Effects on Wind Flow and Aeolian Sediment TransportJerome R. Mayaud0Nicholas P. Webb1School of Geography and the Environment, Oxford University Centre for the Environment, South Parks Road, Oxford OX1 3QY, UKUSDA-ARS Jornada Experimental Range, Las Cruces, NM 88003, USADrylands are characterised by patchy vegetation, erodible surfaces and erosive aeolian processes. Empirical and modelling studies have shown that vegetation elements provide drag on the overlying airflow, thus affecting wind velocity profiles and altering erosive dynamics on desert surfaces. However, these dynamics are significantly complicated by a variety of factors, including turbulence, and vegetation porosity and pliability effects. This has resulted in some uncertainty about the effect of vegetation on sediment transport in drylands. Here, we review recent progress in our understanding of the effects of dryland vegetation on wind flow and aeolian sediment transport processes. In particular, wind transport models have played a key role in simplifying aeolian processes in partly vegetated landscapes, but a number of key uncertainties and challenges remain. We identify potential future avenues for research that would help to elucidate the roles of vegetation distribution, geometry and scale in shaping the entrainment, transport and redistribution of wind-blown material at multiple scales. Gaps in our collective knowledge must be addressed through a combination of rigorous field, wind tunnel and modelling experiments.https://www.mdpi.com/2073-445X/6/3/64drylandswind erosion modellingdrag partitionaerodynamic roughnessremote sensingcomputational fluid dynamicscellular automata
spellingShingle Jerome R. Mayaud
Nicholas P. Webb
Vegetation in Drylands: Effects on Wind Flow and Aeolian Sediment Transport
Land
drylands
wind erosion modelling
drag partition
aerodynamic roughness
remote sensing
computational fluid dynamics
cellular automata
title Vegetation in Drylands: Effects on Wind Flow and Aeolian Sediment Transport
title_full Vegetation in Drylands: Effects on Wind Flow and Aeolian Sediment Transport
title_fullStr Vegetation in Drylands: Effects on Wind Flow and Aeolian Sediment Transport
title_full_unstemmed Vegetation in Drylands: Effects on Wind Flow and Aeolian Sediment Transport
title_short Vegetation in Drylands: Effects on Wind Flow and Aeolian Sediment Transport
title_sort vegetation in drylands effects on wind flow and aeolian sediment transport
topic drylands
wind erosion modelling
drag partition
aerodynamic roughness
remote sensing
computational fluid dynamics
cellular automata
url https://www.mdpi.com/2073-445X/6/3/64
work_keys_str_mv AT jeromermayaud vegetationindrylandseffectsonwindflowandaeoliansedimenttransport
AT nicholaspwebb vegetationindrylandseffectsonwindflowandaeoliansedimenttransport