Advances in Groundwater Flow and Solute Transport: Pushing the Hidden Boundary
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ArticlePublication details: MDPI - Multidisciplinary Digital Publishing Institute 2019Description: 1 electronic resource (196 p.)Content type: - text
- computer
- online resource
- 9783039210749
- 9783039210756
- Technology, Engineering, Agriculture, Industrial processes
- Environmental science, engineering and technology
- Columbia River
- DSR
- GFModel
- IUM
- IUV
- Levy stable distribution
- Monte Carlo
- SW–GW interaction
- TOUGH2
- Ulan Buh Desert
- analytical solution
- assessment
- bimsoils
- desert farmland
- erosion
- evaporation calculation
- evolving-scale log-conductivity
- field measurements
- first-order analytical approach
- flow modeling
- fractional derivative
- fractured aquifers
- groundwater ERT
- groundwater flow
- groundwater flow model
- heterogeneity
- hydraulic conductivity
- hydrologic exchange
- infiltration
- irrigation
- non-Darcian
- non-Darcy flow
- non-Fickian
- nuclear waste disposal
- numerical simulation
- percolation
- permeability coefficient
- permeameter test
- perturbation method
- radioactive contaminant
- rough single fracture
- salinity map
- seawater intrusion
- semi-analytical solution
- silty clay
- slenderness effect
- soil formation
- solute longitudinal dispersion
- solute transport
- steady-state vertical flux
- stochastic Lagrangian framework
- sustainable development
- the Beishan area
- uncertainty
- unsaturated flow
- water flow
- water resource utilization efficiency
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In recent decades, the study of groundwater flow and solute transport has advanced into new territories that are beyond conventional theories, such as Darcy's law and Fick's law. The studied media have changed from permeable porous and fractured ones to much less permeable ones, such as clay and shale. The studied pore sizes have also changed from millimetres to micro-meters or even nano-meters. The objective of this Special Issue is to report recent advances in groundwater flow and solute transport that push the knowledge boundary into new territories which include, but are not limited to, flow and transport in sloping aquifer/hillslopes, coupled unsaturated and saturated flow, coupled aquifer-vertical/horizontal/slant well flow, interaction of aquifer with connected and disconnected rivers, non-Darcian flow, anomalous transport beyond the Fickian scheme, and flow and transport in extremely small pore spaces such as shale and tight sandstones. Contributions focusing on innovative experimental, numerical, and analytical methods for understanding unconventional problems, such as the above-listed ones, are encouraged, and contributions addressing flow and transport at interfaces of different media and crossing multiple temporal and spatial scales are of great value
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