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Przeglądaj Department of Hydrology and Hydrodynamics IG PAS według tematu
Strona główna DSpace
Institute of Geophysics, Polish Academy of Sciences
Department of Hydrology and Hydrodynamics IG PAS
Przeglądaj Department of Hydrology and Hydrodynamics IG PAS według tematu
Strona główna DSpace
Institute of Geophysics, Polish Academy of Sciences
Department of Hydrology and Hydrodynamics IG PAS
Przeglądaj Department of Hydrology and Hydrodynamics IG PAS według tematu
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Przeglądaj Department of Hydrology and Hydrodynamics IG PAS według tematu
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Temat
Africa; Ethiopia; geographic information systems; land use land cover change; remote sensing
[1]
Africa; Ethiopia; landsat; land use land cover changes; remote sensing; SWAT model
[1]
anthropogenic impacts; chlorophyll-a; Ha Long Bay; optical remote sensing; seawater; water quality
[1]
Basin erosion; Landscape evolution model; Numerical modelling; Surface processes; River networks
[1]
China, Drought, HUMDROUGHT, Poland
[1]
dam reservoir; backwater; iRIC; mountain river; Smolnik Stream
[1]
DEM
[1]
DHABSIM solver; iRIC suite; numerical modelling; Po River; River2D solver; river habitat
[1]
Dhidhessa; sub-basin; RCP; SWAT; climate; water; scenario
[1]
disaster, food fatality, global scale, natural hazards, river flood
[1]
distributary channel; Hec-Ras modeling; Po River; tidal influence; river hydromorphodynamics
[1]
Ethiopia, Fincha watershed, hydrology, Land Use Land Cover, Sediment yield, Soil and Water, Assessment Tool
[1]
Ethiopia, Fincha watershed, sediment yield, SWAT model, land use land cover (LULC)
[1]
Ethiopia; Fincha river; land use land cover; land change modeler; multi-layer Markov chain
[1]
Europe, flood risk mapping, floods directive, river morphology, sediment transport, water framework directive
[1]
flood risk management plans; floods directive; iRIC suite; morphodynamics; numerical model; Secchia River
[1]
GIS
[1]
GIS; remote sensing; groundwater potential assessment; analytical hierarchy processes; weight overlay analysis; West Arsi Zone
[1]
groundwater
[1]
Long term suspended sediment transport monitoring with a novel acoustic method validated with direct samples in two different case studies, Characterization of inorganic and organic fractions in suspended sediment transport, Flow discharge to suspended sediment concentration curves and hysteresis analysis through hydrological events
[1]
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