Impact of saturation on continuum-scale conductivity and tracer dispersion in heterogeneous porous media

被引:0
作者
Kalisman, Doron [1 ]
Berkowitz, Brian [1 ]
机构
[1] Weizmann Inst Sci, Dept Earth & Planetary Sci, IL-7610001 Rehovot, Israel
关键词
Solute transport; Porous media; Continuum scale; Hydraulic conductivity field; Partial saturation; Dispersion; SOLUTE TRANSPORT; STOCHASTIC-ANALYSIS; HYDRAULIC CONDUCTIVITY; FLOW; MACRODISPERSIVITY; AQUIFER;
D O I
10.1016/j.advwatres.2025.104953
中图分类号
TV21 [水资源调查与水利规划];
学科分类号
081501 ;
摘要
This study investigates the interplay among water saturation, hydraulic conductivity, and mechanical dispersion in heterogeneous porous media at the continuum scale. Mechanical dispersion of dissolved chemical tracers is influenced directly by water velocity variability, which is governed by the porous structure, the distribution of the water phase within it, and its corresponding conductivity field. Previous studies have either examined the relationships between these factors in fully saturated conditions, or in partial saturation but without considering continuum scale heterogeneity of the media. Through numerical simulations, the analysis here demonstrates how variations in saturation affect the hydraulic conductivity field and, consequently, mechanical dispersion. The study reveals that longitudinal spreading of the tracer plume, when scaled for varying transport times and velocities, shows a non-monotonic relationship with saturation, being least pronounced at an intermediate degree of saturation. These insights contribute to a more nuanced understanding of tracer transport in partially saturated, heterogeneous media, with implications for environmental and engineering applications.
引用
收藏
页数:9
相关论文
共 50 条
  • [41] Russo D., Stochastic analysis of flow and transport in unsaturated heterogeneous porous formation: effects of variability in water saturation, Water. Resour. Res., 34, 4, pp. 569-581, (1998)
  • [42] Saeibehrouzi A., Holtzman R., Denissenko P., Abolfathi S., Solute transport in unsaturated porous media with spatially correlated disorder, Adv. Water. Resour., 191, (2024)
  • [43] Scheidegger A.E., General theory of dispersion in porous media, J. Geophys. Res., 66, 10, pp. 3273-3278, (1961)
  • [44] Simunek J., Van Genuchten M.T., Sejna M., The HYDRUS Software Package For Simulating Two-And Three-Dimensional Movement of water, heat, and Multiple Solutes in Variably-Saturated media. Version 2.0, (2006)
  • [45] Toride N., Inoue M., Leij F.J., Hydrodynamic dispersion in an unsaturated dune sand, Soil Sci. Soc. Am. J, 67, 3, pp. 703-712, (2003)
  • [46] Tseng P.H., Jury W.A., Simulation of field measurement of hydraulic conductivity in unsaturated heterogeneous soil, Water. Resour. Res., 29, 7, pp. 2087-2099, (1993)
  • [47] Vanderborght J., Kasteel R., Vereecken H., Stochastic continuum transport equations for field-scale solute transport: overview of theoretical and experimental results, Vadose Zone J, 5, 1, pp. 184-203, (2006)
  • [48] Van Genuchten M.T., A closed-form equation for predicting the hydraulic conductivity of unsaturated soils, Soil Sci. Soc. Am. J, 44, 5, pp. 892-898, (1980)
  • [49] Witte R.D., (2017)
  • [50] Zech A., Attinger S., Cvetkovic V., Dagan G., Dietrich P., Fiori A., Teutsch G., Is unique scaling of aquifer macrodispersivity supported by field data?, Water. Resour. Res., 51, 9, pp. 7662-7679, (2015)