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RESEARCH ARTICLE

The role of soil water repellency in overland flow generation in pine and eucalypt forest stands in coastal Portugal

J. J. Keizer A C , C. O. A. Coelho A , R. A. Shakesby B , C. S. P. Domingues A , M. C. Malvar A , I. M. B. Perez A , M. J. S. Matias A and A. J. D. Ferreira A
+ Author Affiliations
- Author Affiliations

A Centre for Environmental and Marine Studies (CESAM), Department of Environment and Planning, University of Aveiro, 3810-193 Aveiro, Portugal.

B Department of Geography, University of Wales Swansea, Swansea, Singleton Park, Swansea SA2 8PP, UK.

C Corresponding author. Email: jkeiset@dao.ua.pt

Australian Journal of Soil Research 43(3) 337-349 https://doi.org/10.1071/SR04085
Submitted: 23 June 2004  Accepted: 24 December 2004   Published: 25 May 2005

Abstract

Soil water repellency is now known to occur in diverse soils in various parts of the world. One of the possible adverse effects of soil water repellency is that it can reduce infiltration capacity and hence, on sloping terrain, enhance overland flow and soil erosion. The main aim of the present work is to assess the effects of soil water repellency on surface runoff production in the inner coastal dune areas of central Portugal. This was done for a pine and a eucalypt forest stand and, within each stand, for 2 slopes with contrasting aspect and somewhat different slope angles. Overland flow was measured for 4 pairs of unbounded plots of about 5 m2 at fortnightly intervals from February to October 2001. Over the same period, soil water repellency at and immediately below the soil surface was measured next to the plots at monthly intervals. The runoff–repellency relationship was also studied by carrying out rainfall simulation experiments on 0.24-m2 plots and associated repellency measurements.

The effect of soil water repellency was most clearly demonstrated by statistically significant higher runoff coefficients under strong-to-extremely than under none-to-slightly hydrophobic conditions immediately below the soil surface. Such a difference in runoff over the measurement period was, however, restricted to 2 unbounded plots, both of which were located on the eucalypt slope with a southerly aspect and the greater slope angle. At the scale of these plots, the increase in runoff coefficient due to soil water repellency is moderate, when integrated over the entire period of strong–extremely repellent conditions, but can be quite substantial for individual 2-weekly periods. With respect to the observed differences in runoff between plots, be it plots on the same slope or not, it has proved difficult to distinguish the effect of soil water repellency from that of other factors likely to affect overland flow generation.

Additional keywords: Eucalyptus globulus, Pinus pinaster, rainfall simulation.


Acknowledgments

This work has been funded by the European Commission, under contract FAIR6-CT98–4027, but does not necessarily reflect the Commission’s view and in no way anticipates its future policy in this area. Also the funding by the Research Institute of the University of Aveiro and by the Portuguese Foundation for Science and Technology (FCT), through post-graduate fellowships attributed to the first author (SFRH/BPD/14608/2003, in the case of the FCT), is gratefully acknowledged. We further thank the Physics Department of the University of Aveiro for making available the rainfall data of the weather station at the university campus, Satur de Alba for the modification of the rainfall simulator, Marco Rodrigues for making the Gerlach troughs, Anne-Karine Boulet for her help with the rainfall simulation experiments, and Zulmira Santos and Luísa Pereira for their topographic survey of the sampling locations.


References


Ceballos A, Ferreira AJD, Coelho COA, Boulet AK (1999) Análisis de la repelencia la agua en una pequeña cuenca hidrográfica afectada por fuego controlado en el área montañosa central de Portugal. Pirineos 153–154, 123–143. open url image1

Cerdà A, Ibáñez S, Calvo A (1997) Design and operation of a small and portable rainfall simulator for rugged terrain. Soil Technology 11, 161–168.
Crossref |
open url image1

Coelho COA, Ferreira AJD, Baake M, Keizer JJ (2002) Impacts of prescribed shrubland fire and forest wildfire on overland flow and soil erosion generating processes. ‘Proceedings of the 3rd International Congress Man and Soil at the Third Millenium’. (Ed.  JL Rubio , RPC Morgan , S Asins , V Andreu ) pp. 1485–1496. (Geoforma Ediciones: Logroño, Spain)


Crockford H, Topalidis S, Richardson DP (1991) Water repellency in a dry sclerophyll eucalypt forest—measurements and processes. Hydrological Processes 5, 405–420. open url image1

Daveau S (1977) Répartition et rythme des précipitations au Portugal. Memorias do Centro de Esudos Geográficos No. 3, Universidade de Lisboa, Lisboa.

DeBano LF (2000a) Water repellency in soils: a historical overview. Journal of Hydrology 231–232, 4–32.
Crossref | GoogleScholarGoogle Scholar | open url image1

DeBano LF (2000b) The role of fire and soil heating on water repellency in wildland environments: a review. Journal of Hydrology 231–232, 195–206.
Crossref | GoogleScholarGoogle Scholar | open url image1

Dekker LW (1988) Verspreiding, oorzaken, gevolgen en verbeteringsmogelijkheden van waterafstotende gronden in Nederland. Stichting voor Bodemkartering, Rapport nr 2046, Wageningen.

Dekker LW (1998) Moisture variability resulting from water repellency in Dutch soils. PhD thesis, Wageningen Agricultural University, Wageningen, The Netherlands.

Dekker LW, Jungerius PD (1990) Water repellency in the dunes with special reference to the Netherlands. CATENA 18, 173–183. open url image1

Dekker LW, Ritsema CJ (2000) Wetting patterns and moisture variability in water repellent Dutch soils. Journal of Hydrology 231–232, 148–164.
Crossref | GoogleScholarGoogle Scholar | open url image1

Dekker LW, Ritsema CJ, Oostindie K (2000) Extent and significance of water repellency in dunes along the Dutch coast. Journal of Hydrology 231–232, 112–125.
Crossref | GoogleScholarGoogle Scholar | open url image1

Doerr SH (1998) On standardising the ‘Water Drop Penetration Time’ and the ‘Molarity of an Ethanol Droplet’ techniques to classify soil hydrophobicity: a case study using medium textured soils. Earth Surface Processes and Landforms 23, 663–668.
Crossref | GoogleScholarGoogle Scholar | open url image1

Doerr SH, Shakesby RA, Walsh RPD (1996) Soil hydrophobicity variations with depth and particle size fraction in burned and unburned Eucalyptus globulus and Pinus pinaster forest terrain in the Águeda basin, Portugal. CATENA 27, 25–47.
Crossref | GoogleScholarGoogle Scholar | open url image1

Doerr SH, Shakesby RA, Walsh RPD (1998) Spatial variability of soil water repellency in fire-prone eucalyptus and pine forests, Portugal. Soil Science 163, 313–324.
Crossref | GoogleScholarGoogle Scholar | open url image1

Doerr SH, Shakesby RA, Walsh RPD (2000) Soil water repellency: its causes, characteristics and hydro-geomorphological significance. Earth-Science Reviews 51, 33–65.
Crossref | GoogleScholarGoogle Scholar | open url image1

Ferreira AJD, Coelho COA, Shakesby RA, Walsh RPD (1997) Sediment and solute yield in forest ecosystems affected by fire and rip-ploughing techniques, central Portugal: a plot and catchment analysis approach. Physics and Chemistry of the Earth 22, 309–314.
Crossref | GoogleScholarGoogle Scholar | open url image1

Ferreira AJD, Coelho COA, Walsh RPD, Shakesby RA, Ceballos A, Doerr SH (2000) Hydrological implications of soil water repellency in Eucalyptus globulus forests, north-central Portugal. Journal of Hydrology 231–232, 165–177.
Crossref | GoogleScholarGoogle Scholar | open url image1

Jungerius PD, Dekker LW (1990) Water erosion in the dunes. CATENA 18, 185–193. open url image1

Jungerius PD, ten Harkel MJ (1994) The effect of rainfall intensity on surface runoff and sediment yield in the grey dunes along the Dutch coast under conditions of limited rainfall acceptance. CATENA 23, 269–279.
Crossref | GoogleScholarGoogle Scholar | open url image1

Jungerius PD, de Jong JH (1989) Variability of water repellence in the dunes along the Dutch coast. CATENA 16, 491–497.
Crossref | GoogleScholarGoogle Scholar | open url image1

Jungerius PD, van der Meulen F (1988) Erosion processes in a dune landscape along the Dutch coast. CATENA 15, 217–228.
Crossref | GoogleScholarGoogle Scholar | open url image1

Keizer JJ, Coelho COA, Domingues CSP, Matias MJS, Ferreira AJD (2005) Soil water repellency under dry and wet antecedent weather conditions for selected land-cover types in the coastal zone of central Portugal. Australian Journal of Soil Research 43, 297–308. open url image1

Leighton-Boyce G, Doerr SH, Shakesby RA, Walsh RPD, Ferreira AJD, Boulet AK, Coelho COA (2005) Temporal dynamics of water repellency and soil moisture in eucalypt plantations, Portugal. Australian Journal of Soil Research 43, 269–280. open url image1

Letey J, Carrillo MLK, Pang XP (2000) Approaches to characterize the degree of water repellency. Journal of Hydrology 231–232, 61–65.
Crossref | GoogleScholarGoogle Scholar | open url image1

Morgan, RPC (1995). ‘Soil erosion and conservation.’ 2nd edn . (Longman: Essex, UK)

Ritsema CJ (1998) Flow and transport in water repellent sandy soils. PhD thesis, Wageningen Agricultural University, Wageningen, The Netherlands.

Shakesby RA, Boakes DJ, Coelho COA, Gonçalves AJB, Walsh RPD (1996) Limiting the soil degradational impacts of wildfire in pine and eucalyptus forests, Portugal: comparison of alternative post-fire management practices. Applied Geography 16, 337–355.
Crossref | GoogleScholarGoogle Scholar | open url image1

Shakesby RA, Coelho COA, Ferreira AD, Terry JP, Walsh RPD (1993) Wildfire impacts on soil erosion and hydrology in wet Mediterranean forest, Portugal. International Journal of Wildland Fire 3, 95–110. open url image1

Shakesby RA, Doerr SH, Walsh RPD (2000) The erosional impact of soil hydrophobicity: current problems and future research directions. Journal of Hydrology 231–232, 178–191.
Crossref | GoogleScholarGoogle Scholar | open url image1

Sokal, RR ,  and  Rohlf, FJ (1981). ‘Biometry.’ 2nd edn . (WH Freeman and Company: New York)

SPSS (1999a). ‘SPSS Base 10.0 user’s guide.’ a. (SPSS Inc.: Chicago, IL)

SPSS (1999b). ‘SPSS Base 10.0 applications guide.’ b. (SPSS Inc.: Chicago, IL)

Walsh RPD, Coelho COA, Elmes A, Ferreira AJD, Gonçalves AJB, Shakesby RA, Ternan JL, Williams AG (1998) Rainfall simulation plot experiments as a tool in overland flow and soil erosion assessment, north-central Portugal. GeoÖkoDynamik 19, 139–152. open url image1

Walsh RPD, Coelho COA, Shakesby RA, Ferreira AJD, Thomas AD (1995) Post-fire land use and management and runoff responses to rainstorms in northern Portugal. ‘Geomorphology and land management in a changing environment’. (Eds DFM McGregor, DA Thompson, S Asins, V Andreu) pp. 283–308. (Wiley: Chichester, UK)

Witter JV, Jungerius PD, ten Harkel MJ (1991) Modelling water erosion and the impact of water repellency. CATENA 18, 115–124.
Crossref | GoogleScholarGoogle Scholar | open url image1