Green Horizontal Line

HYdraulic PRoperties of European Soils

References concerning the use of Pedotransfer:

Published in 'The use of Pedotransfer in soil hydrology research in Europe. Proceedings of the second EU Workshop on Using existing soil data to derive hydraulic parameters for simulation models in environmental studies and in land use planning. Edited by Bruand, A., Duval,O., Wösten, J.H.M. and Lilly, A. October 1996. INRA. Orléans and EC/JRC Ispera. ISBN 2-7380-0744-9.

Ahuja, L.R., J.W. Naney and R.D. Williams. 1985. Estimating soil water characteristics from simpler properties or limited data. Soil Science Society of America Journal, 49: 1100-1105.

Aina, P.O. and Periaswamy, S.P. 1985. Estimating available water-holding capacity of western Nigerian soils from soil texture and bulk density, using core and sieved samples. Soil Science, 140: 55-58.

Arya, L.M. and T.S. Dierolf. 1992. Predicting soil moisture characteristics from particle-size distributions: an improved method to calculate pore radii from particle radii. pp. 115-124. In: Indirect methods for estimating the hydraulic properties of unsaturated soils. Eds. van Genuchten, M.Th., Leij, F.J. and Lund, L.J. Proceedings of the International Workshop on Indirect Methods for Estimating the Hydraulic Properties of Unsaturated Soils. Riverside, California, 11-13 October 1989.

Arya, L.M. and J.F. Paris. 1981. A physicoempirical model to predict the soil moisture characteristic from particle-size distribution and bulk density data. Soil Science Society of America Journal, 45, 1023-1030.

Bakker, J.W., F.R. Boone and P. Boekel. 1987. Diffusion of gasses in soil and oxygen diffusion coefficients in Dutch agricultural soils. Report 20, The Winand Staring Centre, Wageningen, the Netherlands (in Dutch).

Batjes, N.H. 1996. Development of a world data set of soil water retention properties using pedotransfer rules. Geoderma, 71, 31-52.

Bell, M.A. and Vankeulen, H. 1995. Soil pedotransfer functions for 4 Mexican soils. Soil Science Society of America Journal, 59, 865-871.

Bloemen, G.W. 1980. Calculation of hydraulic conductivities from texture and organic matter content. Zeitschrift für Pflanzenernährung und Bodenkunde, 143, 581-605.

Bibby, J.S., Douglas, H.A., Thomasson, A.J. and Robertson, J.S. 1982. Land Capability Classification for Agriculture. The Macaulay Land Use Research Institute for Soil Research. Aberdeen.

Bouma, J. and J.A.J. van Lanen. 1987. Transfer functions and threshold values: From soil characteristics to land qualities. In: Proceedings of the International Workshop on Quantified Land Evaluation. Eds. Beek, K.J., Burrough, P.A. and McCormack, D.E. Proceedings of a Workshop. ISSS and SSSA, Washington, DC. 27 Apr.-2 May 1986. Int. Inst. Aerospace Surv. Earth Sci. Publ. No. 6. ITC Publ., Enschede, The Netherlands.

Breeuwsma, A., J.H.M. Wösten. J.J. Vleeshouwer, A.M. van Slobbe and J. Bouma. 1986. Derivation of land qualities to assess environmental problems from soil surveys. Soil Science Society of America Journal, 50, 186-190.

Brooks, R.H. and A.T. Corey. 1964. Hydraulic properties of porous media. Hydrology Paper no. 3. Colorado State University. Fort Collins. Colorado.

Bruand, A. 1990. Improved prediction of water-retention properties of clayey soils by pedological stratification. Journal of Soil Science, 41, 491 - 497.

Bruand, A., Baize, D. and Hardy, M. 1994. Prediction of water retention properties of clayey soils: validity of relationships using a single soil characteristic. Soil Use and Management, 10, 99 - 103.

Burdine, N.T. 1953. Relative permeability calculations from pore-size distribution data. Petroleum Transactions of the American Institute of Mining Engineering, 198, 71-77.

Campbell, G.S. 1974. A simple method for determining unsaturated conductivity from moisture retention data. Soil Science, 117, 311-314.

Cassel, D.K., Ratliff, L.F. and Ritchie, J.T. 1983. Models for estimating in-situ potential extractable water using soil physical and chemical properties.Soil Science Society of America Journal, 47, 764-769.

Clapp, R.B. and G.M. Hornberger. 1978. Empirical equations for some soil hydraulic properties. Water Resources Research, 14, 601-604.

Cosby, B.J., G.M. Hornberger, R.B. Clapp and T.R. Ginn. 1984. A statistical exploration of the relationship of soil moisture characteristics to the physical properties of soil. Water Resources Research, 20, 682-690.

Danalatos, N.G., Kosmas, C.S., Driessen, P.M. and Yassoglou, N. 1994. Estimation of the draining soil moisture characteristic from standard data as recorded in soil surveys. Geoderma, 64, 155 - 165.

Dunne, K.A. and Willmott, C.J. 1996. Global distribution of plant-extractable water capacity of soil. International Journal of Climatology, 16, 841-859.

Espino, A., Mallants, D., Vanclooster, M. and Feyen, J. 1995. Cautionary notes on the use of pedotransfer functions for estimating soil hydraulic properties. Agricultural Water Management, 29, 235-253.

Finke, P.A., J.H.M. Wösten and M.J.W. Jansen. 1995. Effects of uncertainty in major input variables on simulated functional soil behaviour. Accepted for publication in Hydrological Processes.

van Genuchten, M.Th. 1980. A closed-form equation for predicting the hydraulic conductivity of unsaturated soils. Soil Science Society of America Journal, 44, 892-898.

van Genuchten, M.Th. and F.J. Leij. 1992. On estimating the hydraulic properties of unsaturated soils. pp. 1-14. In: Indirect methods for estimating the hydraulic properties of unsaturated soils. Eds. van Genuchten, M.Th., Leij, F.J. and Lund, L.J. Proceedings of the International Workshop on Indirect Methods for Estimating the Hydraulic Properties of Unsaturated Soils. Riverside, California, 11-13 October 1989.

van Genuchten, M.Th. and D.R. Nielsen. 1985. On describing and predicting the hydraulic properties of unsaturated soils. Ann. Geophys., 3, 615-628.

van Genuchten, M.Th., F.J. Leij and S.R. Yates. 1991. The RETC code for quantifying the hydraulic functions of unsaturated soils. USDA, US Salinity Laboratory, Riverside, CA.

Ghosh, R.K. 1980. Estimation of soil-moisture characteristics from mechanical properties of soils. Soil Science. , 130: 60-63.

Gregson, K., D.J. Hector and M. McGowan. 1987. A one-parameter model for the soil water characteristic. Journal of Soil Science, 38, 483-486.

Gupta, S.C. and W.E. Larson. 1979. Estimating soil water characteristic from particle size distribution, organic matter percent, and bulk density. Water Resources Research, 15, 1633-1635.

Haverkamp, R. and J.-Y. Parlange. 1986. Predicting the water retention curve from particle-size distribution: 1. Sandy soils without organic matter. Soil Science, 142, 325-339.

Hall, D.G.M., Reeve, M.J., Thomasson, A.J. and Wright, V.F. 1977. Water retention, porosity and density of field soils. Soil Survey Technical Monograph No. 9. Soil Survey of England and Wales. Lawes Agricultural Trust. Rothamstead Experimental Station. Harpenden.

Hollis, J.M. and Woods, S.M. 1989. The measurement and estimation of saturated soil hydraulic conductivity. SSLRC Research Report for MAFF. Soil Survey and Land Research Centre. Silsoe.

Hollis, J.M., Jones, R.J.A. and Palmer, R.C. 1977. The effect of organic matter and particle size on the water retention properties of some soils in the West Midlands of England. Geoderma, 17, 225 - 238.

Hopmans, J.W. and B. Overmars. 1986. Predicting and application of an analytical model to describe soil hydraulic properties. Journal of Hydrology, 87, 135-143.

Hutson, J.L. and Cass, A. 1987. A retentivity function for use in soil water simulation models. Journal of Soil Science, 38, 105 - 113.

de Jong, R., Campbell, C.A. and Nicholaichuk, W. 1983. Water retention equations and their relationship to soil organic matter and particle size distribution for disturbed samples. Canadian Journal of Soil Science, 63, 291 - 302.

de Jong, R. 1982. Assessment of empirical parameters that describe soil water characteristics. Canadian Agricultural Engineering, 24, 65-70.

de Jong, R. and Loebel, K. 1982. Empirical relations between soil components and water retention at _ and 15 atmospheres. Canadian Journal of Soil Science, 62, 343 - 350.

King, D., le Bas, C., Daroussin, J., Thomasson, A.J. and Jones, R.J.A. 1995. The EU map of soil water available for plants. In: European land information systems for agro-environmental monitoring. King, D., Jones, R.J.A. and Thomasson, A.J. (Eds). Institute for Remote Sensing Applications. Joint Research Centre. Office for Official Publications of the European Community. Luxembourg.

Kool, J.B., J.C. Parker and M.Th. van Genuchten. 1987. Parameter estimation for unsaturated flow and transport models - A review. Journal of Hydrology, 91, 255-293.

Lal, R. 1979. Physical properties and moisture retention characteristics of some Nigerian soils. Geoderma, 21, 209 - 223.

Manrique, L.A., Jones, C.A. and Dyke, P.T. 1991. Predicting soil water retention characteristics from soil physical and chemical properties. Communications in Soil Science and Plant Analysis, 22, 1847-1860.

Mualem, Y. 1976. A new model for predicting the hydraulic conductivity of unsaturated porous media. Water Resources Research, 12, 513-522.

Mualem, Y. 1992. Modeling the hydraulic conductivity of unsaturated porous media. pp. 15-36. In: Indirect methods for estimating the hydraulic properties of unsaturated soils. Eds. van Genuchten, M.Th., Leij, F.J. and Lund, L.J. Proceedings of the International Workshop on Indirect Methods for Estimating the Hydraulic Properties of Unsaturated Soils. Riverside, California, 11-13 October 1989.

Petersen, G.W., Cunningham, R.L. and Matelski, R.P. 1968. Moisture characteristics of Pensylvania soils. 1. Moisture retention as related to texture. Soil Science Society of America Proceedings, 32, 271-275.

Poelman, J.N.B. and Th. van Egmond. 1979. Water retention curves for sea- and river-clay soils derived from easily measured soil properties. Report 1492 (in Dutch), Winand Staring Centre, Wageningen, The Netherlands.

Ranst, E. v., Vanmechelen, L., Thomasson, A.J., Daroussin, J., Hollis, J.M., Jones, R.J.A., Jamagne, M. and King, D. 1995. Elaboration of an extended knowledge database to interpret the 1: 1 000 000 EU soil map for environmental purposes. In: European land information systems for agro-environmental monitoring. King, D., Jones, R.J.A. and Thomasson, A.J. (Eds). Institute for Remote Sensing Applications. Joint Research Centre. Office for Official Publications of the European Community. Luxembourg.

Rasiah, V. 1995. Comparison of pedotransfer functions to predict nitrogen-mineralisation parameters of 1-pool and 2-pool models. Communications in Soil Science and Plant Analysis, 26, 1873-1884.

Rawls, W.J. and D.L. Brakensiek. 1985. Prediction of soil water properties for hydrologic modeling. p. 293-299. In: Watershed Management in the Eighties. Eds. Jones, E and Ward, T.J. Proceedings of a Symposium ASCE, Denver, Colorado. 30 Apr. - 2 May 1985. ASCE, New York.

Rawls, W.J., D.L. Brakensiek and K.E. Saxton. 1982. Estimation of soil water properties. Transactions of ASAE, 25, 1316-1320.

Rawls, W.J., Gish, T.J. and Brakensiek, D.L. 1991. Estimating soil water retention from soil physical properties and characteristics In: Advances in Soil Science. Ed. Stewart, B.A. Volume 16. Springer-Verlag. New York.

Reeve, M.J., Smith, P.D. and Thomasson, A.J. 1973. The effect of density on water retention properties of field soils. Journal of Soil Science, 24, 355 - 367.

Richards, L.A. 1931. Capillary conduction of liquids through porous mediums. Physics,1, 318-333.

Rivers, E.D. and Shipp, R.F. 1978. Soil water retention as related to particle size in selected sands and loamy sands. Soil Science,126, 94 - 100.

de La Rosa, D., Cardona, F. and Almorza, J. 1981. Crop yield predictions based on properties of soils in Sevilla, Spain. Geoderma, 25, 267-274.

de La Rosa, D. 1979. Relation of several pedological characteristics to engineering qualities of soil. Journal of Soil Science, 30, 793-799.

Russo, D. 1988. Determining soil hydraulic properties by parameter estimation: On the selection of a model for the hydraulic properties. Water Resources Research, 24, 453-459.

Salchow, E., Lal, R., Fausey, N.R. and Ward, A. 1996. Pedotransfer functions for variable alluvial soils in Southern Ohio. Geoderma, 73, 165-181.

Saxton, K.E., W.J. Rawls, J.S. Romberger and R.I. Papendick. 1986. Estimating generalized soil-water characteristics from texture. Soil Science Society of America Journal, 50, 1031-1036.

Schuh, W.M. and Bauder, J.W. 1986. Effect of soil properties on hydraulic conductivity-moisture relationships. Soil Science Society America Journal, 50, 848 - 855.

Shaykewich, G.F. and Zwarich, M.A. 1968. Relationships between soil physical costants and soil physical components of some Manitoba soils. Canadian Journal of Soil Science, 48, 199 - 204.

Thomasson, A.J. 1995. Assessment of soil water reserves available for plants (SWAP): a review. In: European land information systems for agro-environmental monitoring. King, D., Jones, R.J.A. and Thomasson, A.J. (Eds). Institute for Remote Sensing Applications. Joint Research Centre. Office for Official Publications of the European Community. Luxembourg.

Tietje, O. and Hennings, V. 1993. Evaluation of pedotransfer functions for estimating the water retention curve. Zeitschrift für Pflanzenernahrung und Bodenkunde, 156, 447-455.

Tietje, O. and M. Tapkenhinrichs. 1993. Evaluation of pedo-transfer functions. Soil Science Society of America Journal, 57, 1088-1095.

Tietje, O. and Hennings, V. 1996. Accuracy of the saturated hydraulic conductivity prediction by pedo-transfer functions comapred to the variability within FAO textural classes. Geoderma, 69, 71-84.

Tyler, S.W. and S.W. Wheatcraft. 1988. Application of fractal mathematics to soil water retention estimation. Soil Science Society of America Journal, 53, 987-996.

Vereecken, H., J. Diels, J. van Orshoven, J. Feyen and J. Bouma. 1992. Functional evaluation of pedotransfer functions for the estimation of soil hydraulic properties. Soil Science Society of America Journal, 56, 1371-1378.

Vereecken, H. 1992. Derivation and validation of pedotransfer functions for soil hydraulic properties. pp. 473-488. In: Indirect methods for estimating the hydraulic properties of unsaturated soils. Eds. van Genuchten, M.Th., Leij, F.J. and Lund, L.J. Proceedings of the International Workshop on Indirect Methods for Estimating the Hydraulic Properties of Unsaturated Soils. Riverside, California, 11-13 October 1989.

Vereecken, H., J. Maes and J. Feyen. 1990. Estimating unsaturated hydraulic conductivity from easily measured soil properties. Soil Science, 149, 1-12.

Vereecken, H., J. Maes, P. Darius and J. Feyen. 1989. Estimating the soil moisture retention characteristic from texture, bulk density and carbon content. Soil Science, 148, 389-403.

Visser, W.C. 1968. An empirical expression for the desorption curve. pp. 329-335. In: Water in the unsaturated zone. Volume I. Eds. Rijtema, P.E. and Wassink, H. Proceedings of Wageningen Symposium. IAHS, UNESCO, Paris.

Wösten, J.H.M., G.J. Veerman and J. Stolte. 1994. Water retention and hydraulic conductivity characteristics of top- and sub-soils in the Netherlands: the Staring series. Updated version 1994. Technical Document 18, The Winand Staring Centre, Wageningen, the Netherlands (in Dutch).

Wösten, J.H.M., C.H.J.E. Schuren, J. Bouma and A. Stein. 1990. Functional sensitivity analysis of four methods to generate soil hydraulic functions. Soil Science Society of America Journal, 54, 832-836.

Wösten, J.H.M., P.A. Finke and M.J.W. Jansen. 1995. Comparison of class and continuous pedotransfer functions to generate soil hydraulic characteristics. Geoderma, 66, 227-237.

Wösten. J.H.M. and M.Th. van Genuchten. 1988. Using texture and other soil properties to predict the unsaturated soil hydraulic conductivity. Soil Science Society of America Journal, 52, 1762-1770.

Green Horizontal Line
See how the Institute benefits the following:
 
 
Green Horizontal Line
Updated: 24 December 2009

Valid HTML 4.01!