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Physical geography / Groundwater / Hyporheic zone / Aquifer / Hydrogeology / Hydrological modelling / Water resources / METRIC / Subsurface flow / Hydrology / Water / Earth


Hydrol. Earth Syst. Sci., 18, 3121–3149, 2014 www.hydrol-earth-syst-sci.net[removed]doi:[removed]hess[removed] © Author(s[removed]CC Attribution 3.0 License. Continental hydrosystem modelling: the concept of
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Document Date: 2014-08-21 01:37:39


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City

Toulouse / Paris / /

Company

Wilson / Marion / Heinz / Knudsen / /

Country

France / /

/

Event

Environmental Issue / Natural Disaster / /

Facility

PSL Research University / /

IndustryTerm

ecological systems / river banks / outer bank sediment heterogeneities / chemical concentration / satellite data / outer eroded bank / river network / stream network / aquifer systems / flow systems / e.g. steep chemical gradients / satellite ground track / satellite observations / nested groundwater flow systems / satellite orbit / bank full width / travel time / travel times / nested flow systems / bank storage / peculiar local aquifer systems / inner meander bank results / occurring in the river network / /

NaturalFeature

Ocean Topography / Modelling stream / Congo River / /

OperatingSystem

LEGOS / /

Organization

European Geosciences Union / Geosciences Department / UPMC Univ Paris / Canadian Space Agency / National Aeronautics and Space Administration / UK Space Agency / French Spatial Agency / Council of the European Union / PSL Research University / Stanford / /

Person

Chen / Doyle / Hester / /

Position

pressure head / common model for simulating stream–aquifer exchanges / piezometric head / representative / /

Technology

remote sensing / 3-D / 3-D system / simulation / /

URL

www.hydrol-earth-syst-sci.net/18/3121/2014 / /

SocialTag