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Schematic of the adopted conceptual model for vertical infiltration

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Detecting causal relationship of non-floodplain wetland hydrologic connectivity using convergent cross mapping

A conceptual model for infiltration in two-layered soils with a more permeable upper layer: From local to field scale - ScienceDirect

Modeling bioretention stormwater systems: Current models and future research needs - ScienceDirect

The project – TERESA

Jian SU, Professor (Full), D.Sc., Nuclear Engineering Department and Nanoengineering Department, COPPE

Frontiers Hydraulic Conductivity Behaviors of Karst Aquifer With Conduit-Fissure Geomaterials

Frontiers Sediment sources and connectivity linked to hydrologic pathways and geomorphic processes: a conceptual model to specify sediment sources and pathways through space and time

Martinus VAN GENUCHTEN, Collaborating Professor, Federal University of Rio de Janeiro, Rio de Janeiro, UFRJ, Department of Nuclear Engineering

Model I. Vertical contaminant transport from a source located in a

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Schematic of the adopted conceptual model for vertical infiltration

Theories of Horizontal and Vertical Infiltration Under Different Boundary Conditions

Modelling Stormwater Runoff Changes Induced by Ground-Mounted Photovoltaic Solar Parks: A Conceptualization in EPA-SWMM

Full article: The influence of statutory land use planning on water sensitive urban design practices