Physical Nonequilibrium in Soils provides cutting-edge knowledge on physical nonequilibrium phenomena in soils, offering unique insight into the complexity of our physical world. With 18 chapters comprising the book, topics cover
Coupling Sorption Rate Heterogeneity and Physical Nonequilibrium in Soils, R.J. Wagenet and W. Chen
Hydraulic and Physical Nonequilibrium Effects on Multiregion Flow, G.V. Wilson, J.P. Gwo, P.M. Jardine, and R.J. Luxmoore
Multiprocess Nonequilibrium and Nonideal Transport of Solutes in Porous Media, M.L. Brusseau
Coupling of Retention Approaches to Physical Nonequilibrium Models, L. Ma and H.M. Selim
Analytical Solutions for Nonequilibrium Transport Models, F.J. Leij and N. Toride
Use of Fractals to Describe Soil Structure, H.W.G. Booltink, J. Bouma, and P. Droogers
Modeling the Impact of Preferential Flow on Nonpoint Source Pollution, N. Jarvis
Modeling the Interaction between Leaching and Intraped Diffusion, T.M. Addiscott, A.C. Armstrong, and P.B. Leeds-Harrison
Experimental Techniques for Confirming and Quantifying Physical Nonequilibrium Processes in Soils, P.M. Jardine, R. O'Brien, G.V. Wilson, and J.-P. Gwo
Transport in Unsaturated Soil: Aggregates, Macropores, and Exchange, B.E. Clothier, I. Vogeler, S.R. Green, and D.R. Scotter
Field Parameterization of the Mobile/Immobile Domain Model, D.B. Jaynes and R. Horton
Transfer Function Approaches to Modeling Solute Transport in Soils, R.E. White, L.K. Heng, and R.B. Edis
Field-Scale Solute Transport in the Vadose Zone: Experimental Observations and Interpretation, M. Flury, W.A. Jury, and E.J. Kladivko
Density-Coupled Water Flow and Contaminant in Soils, R.S. Mansell, J.H. Dane, D. Shinde, and H.H. Liu
Numerical Modeling of NAPL Dissolution Fingering in Porous Media, C.T. Miller, S.N. Gleyzer, and P.T. Imhoff
Flow and Entrapment of Nonaqueous Phase Liquids in Heterogeneous Soil Formations, T.H. Illangasekare
Strategies for Describing Preferential Flow: The Continuum Approach and Cellular-Automation Fluids, L. Di Pietro
Using GIS and Geostatistics to Model Nonequilibrium Flow at a Farm Scale, A.S. Rogowski