Have a personal or library account? Click to login
Parameter estimation of soil hydraulic and thermal property functions for unsaturated porous media using the HYDRUS-2D code Cover

Parameter estimation of soil hydraulic and thermal property functions for unsaturated porous media using the HYDRUS-2D code

Open Access
|Feb 2014

References

  1. Bard, Y., 1974. Nonlinear parameter estimation. Academic Press, New York, NY.
  2. Bohne, K., Roth, C., Leij, F.J., van Genuchten, M.T., 1992. Rapid method for estimating the unsaturated hydraulic conductivity from infiltration measurement. Soil Sci., 155, 4, 237-244.10.1097/00010694-199304000-00001
  3. Chung, S.O., Horton, R., 1987. Soil heat and water flow with a partial surface mulch. Water Resour. Res., 23, 12, 2175-2186.10.1029/WR023i012p02175
  4. Clausnitzer, V., Hopmans, J.W., 1995. Non-linear parameter estimation: LM_OPT. General-purpose optimization code based on the Levenberg-Marquardt algorithm. Land, Air and Water Resources Paper No. 100032, University of California, Davis, CA.
  5. Constantz, J., 1982. Temperature dependence of unsaturated hydraulic conductivity of two soils. Soil Sci. Soc. Am. J., 46, 3, 466-470.10.2136/sssaj1982.03615995004600030005x
  6. Dane, J.J., Topp, G.C., (Eds.), 2002. Methods of Soil Analysis. Part 4 - Physical Methods. Soil Sci. Soc. Am., Inc., Madison, WI. de Marsily, G., 1986. Quantitative Hydrogeology. Academic Press, London. de Vries, D.A., 1963. The thermal properties of soils. In: van Wijk, R.W. (Ed.): Physics of Plant Environment, North Holland, Amsterdam, pp. 210-235.
  7. Dirksen, C., 1991. Unsaturated hydraulic conductivity. In: Smith, K.A., Mullins, C.E. (Eds.): Soil Analysis: Physical Methods. Marcel Dekker, Inc., New York, pp. 209-269.
  8. Dirksen, C., 2000. Unsaturated hydraulic conductivity. In: Smith, K.A., Mullins, C.E. (Eds.): Soil Analysis: Physical Methods, second ed., Marcel Dekker Inc., New York, pp. 183-237.
  9. Finsterle, S., Najita, J., 1998. Robust estimation of hydrologic model parameters. Water Resour. Res., 34, 2939-2947.10.1029/98WR02174
  10. Hollenbeck, K., Šimůnek, J., van Genuchten, M.Th.., 2000. RETCML: Incorporating maximum-likelihood estimation principles in the hydraulic parameter estimation code RETC. Comput. Geosci., 26, 319-327.10.1016/S0098-3004(99)00138-7
  11. Hopmans, J.W., Šimůnek, J., 1999. Review of inverse estimation of soil hydraulic properties. In: van Genuchten, M.Th., et al. (Ed.): Characterization and Measurement of the Hydraulic Properties of Unsaturated Porous Media. University of California, Riverside, California, pp. 643-659.
  12. Hopmans, J.W., Šimůnek, J., Bristow, K.L., 2002. Indirect estimation of soil thermal properties and water flux from heat pulse measurements: Geometry and dispersion effects. Water Resour. Res., 38, 1, 7.1-7.14.10.1029/2000WR000071
  13. Inoue, M., Šimůnek, J., Shiozawa, S., Hopmans, J.W., 2000. Estimation of soil hydraulic and solute transport parameters from transient infiltration experiments. Adv. Water Resour., 23, 677-688.10.1016/S0309-1708(00)00011-7
  14. Klute, A., (Ed.) 1986. Methods of Soil Analysis. Part 1, Second edition. Agronomy Monograph, 9, 635-662, ASA and SSSA, Madison, WI., Kool, J.B., Parker, J.C., 1987. Development and evaluation of closed-form expressions for hysteretic soil hydraulic properties. Water Resour. Res., 23, 1, 105-114.10.1029/WR023i001p00105
  15. Kool, J.B., Parker, J.C., van Genuchten, M.Th., 1987. Parameter estimation for unsaturated flow and transport models - A review. J. Hydrol., 91, 255-293.10.1016/0022-1694(87)90207-1
  16. Nassar, I.N., Horton, R., 1992. Simultaneous transfer of heat, water, and solute in porous media: I. Theoretical development. Soil Sci. Soc. Am. J., 56, 1350-1356.10.2136/sssaj1992.03615995005600050004x
  17. Marquardt, D.W., 1963. An algorithm for least-squares estimation of nonlinear parameters. Journal of the Society of Industrial and Applied Mathematics, 11, 2, 431-441.10.1137/0111030
  18. Mortensen, A.P., Hopmans, J.W., Mori, Y., Šimůnek, J., 2006.
  19. Multi-functional heat pulse probe measurements of coupled vadose zone flow and transport. Adv. Water Resour., 29, 2, 250-267.10.1016/j.advwatres.2005.03.017
  20. Mualem, Y., 1976. A new model for predicting the hydraulic conductivity of unsaturated porous media. Water Resour. Res., 12, 3, 513-522.10.1029/WR012i003p00513
  21. Philip, J.R., de Vries, D.A., 1957. Moisture movement in porous materials under temperature gradients. Trans. Am. Geophys. Union, 38, 222-232.10.1029/TR038i002p00222
  22. Radcliffe, D.E, Šimůnek, J., 2010. Soil Physics with HYDRUS. CRC Press, Taylor & Francis Group, Boca Raton, FL, ISBN: 978-1-4200-7380-5, pp. 373.
  23. Reynolds, W.D., Elrick, D.E., Youngs, E.G., 2002a. Ring or cylinder infiltrometers (vadose zone). In: Dane, J.H., Topp, G.C. (Eds.): Methods of Soil Analysis. Part 4 - Physical Methods. SSSA No. 5, Soil Science Society of America, Inc. Madison, Wisconsin, pp. 818-820.
  24. Reynolds, W.D., Elrick, D.E., Youngs, E.G., 2002b. Singlering and double or concentric-ring infiltrometers. In: Dane, J., Topp, G.C. (Eds): Methods of Soil Analysis. Part 4 - Physical Methods. SSSA No. 5, Soil Science Society of America, Inc. Madison, WI, pp. 821-826.
  25. Russo, D., Shani, U., Parker, J.C., 1991. Analyses of infiltration, events in relation to determining soil hydraulic properties by inverse problem methodology. Water Resour. Res., 27, 1361-1373.10.1029/90WR02776
  26. Saito, H., Šimůnek, J., Mohanty. B., 2006. Numerical analyses of coupled water, vapor and heat transport in the vadose zone. Vadose Zone J., 5, 2, 784-800.10.2136/vzj2006.0007
  27. Saito, H., Šimůnek, J., Hopmans, J.W., Tuli, A., 2007. Numerical evaluation of the heat pulse probe for simultaneous estimation of water fluxes and soil hydraulic and thermal properties. Water Resour. Res., 43, W07408.10.1029/2006WR005320
  28. Sakai, M., Toride, N., Šimůnek, J., 2009. Water and vapor movement with condensation and evaporation in a sandy column subject to temperature gradient. Soil Sci. Soc. Am. J., 73, 3, 707-717.10.2136/sssaj2008.0094
  29. Schaap, M. G., Leij, F. J., van Genuchten, M. Th., 2001. Rosetta: A computer program for estimating soil hydraulic parameters with hierarchical pedotransfer functions. J. Hydrol., 251, 163-176.10.1016/S0022-1694(01)00466-8
  30. Shepard, F. P., 1954. Nomenclature based on sand-silt-clay ratios. Journal of Sedimentary Petrology, 24, 151-158.10.1306/D4269774-2B26-11D7-8648000102C1865D
  31. Šimůnek, J., Suarez, D.L., 1993. The UNSATCHEM-2D code for simulating two-dimensional variably saturated water flow, heat transport, carbon dioxide production and transport, and multicomponent solute transport with major ion equilibrium and kinetic chemistry. Version 1.1, Research Report No. 128, U. S. Salinity Laboratory, USDA, ARS, Riverside, California.
  32. Šimůnek, J., van Genuchten, M.Th., 1996. Estimating unsaturated soil hydraulic properties from tension disc infiltrometer data by numerical inversion. Water Resour. Res., 32, 9, 2683-2696.10.1029/96WR01525
  33. Šimůnek, J., Angulo-Jaramillo, R., Schaap, M., Vandervaere, J.P., van Genuchten, M.Th., 1998. Using an inverse method to estimate the hydraulic properties of crusted soils from tension disc infiltrometer data. Geoderma, 86, 1-2, 61-81.10.1016/S0016-7061(98)00035-4
  34. Šimůnek, J., Jacques, D., Hopmans, J.W., Inoue, M., Flury, M., van Genuchten, M.Th., 2002. Solute Transport During Variably- Saturated Flow - Inverse Methods. In: Dane, J.H., Topp, G.C. (Eds.): Methods of Soil Analysis. Part 4 - Physical Methods. Third edition, Chapter 6.6, SSSA, Madison, Wisconsin, pp. 1435-1449.10.2136/sssabookser5.4.c59
  35. Šimůnek, J., Šejna, M., van Genuchten, M.Th., 2006. The hydrus software package for simulating two- and threedimensional movement of water, heat, and multiple solutes in variably-saturated media. User Manual, Version 1.0, PC Progress, Prague, Czech Republic.
  36. Šimůnek, J., van Genuchten, M.Th., Šejna, M., 2008. Development and applications of the HYDRUS and STANMOD software packages, and related codes. Vadose Zone J., 7, 2, 587-600.10.2136/vzj2007.0077
  37. Sophocleous, M., 1979. Analysis of water and heat flow in unsaturated-saturated porous media. Water Resour. Res., 15, 5, 1195-1206. van Genuchten, M.Th., 1980. A closed-form equation for predicting the hydraulic conductivity of unsaturated soils. Soil Sci. Soc. Am. J., 44, 892-898.10.1029/WR015i005p01195
  38. Vogel, T., Císlerová, M., Hopmans, J.W., 1991. Porous media with linearly variable hydraulic properties. Water Resour. Res., 27, 10, 2735-2741.10.1029/91WR01676
  39. Vrugt, J.A., Stauffer, P.H., Wöhling, T., Robinson, B.A., Vesselinov, V., 2008. Inverse modeling of subsurface flow and transport properties: A review with new developments. Vadose Zone J., 7, 2, 843-864.10.2136/vzj2007.0078
  40. Wooding, R.A., 1968. Steady infiltration from large shallow circular pond. Water Resour. Res., 4, 1259-1273. 10.1029/WR004i006p01259
DOI: https://doi.org/10.2478/johh-2014-0008 | Journal eISSN: 1338-4333 | Journal ISSN: 0042-790X
Language: English
Page range: 7 - 15
Published on: Feb 13, 2014
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2014 Mohammad Nakhaei, Jiří Šimůnek, published by Slovak Academy of Sciences, Institute of Hydrology
This work is licensed under the Creative Commons License.