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A robust and fast model for simulating street flooding
Arturo S. León
, Leonardo S. Nanía
,
Arthur R Schmidt
,
Marcelo Horacio Garcia
Civil and Environmental Engineering
Earth Science and Environmental Change
Center for Latin American and Caribbean Studies
Research output
:
Chapter in Book/Report/Conference proceeding
›
Conference contribution
Overview
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Keyphrases
Street Flooding
100%
Two-module
100%
Fast Model
100%
Urban Areas
66%
Chicago
66%
Supercritical Flow
66%
Clogging
33%
Flow Velocity
33%
Hydrology
33%
Water Flow
33%
Rainfall
33%
Finite Volume
33%
Flow Type
33%
High Water
33%
3-flow
33%
Water Reclamation
33%
Metropolitan Water
33%
Water Depth
33%
Hydrologic Modeling
33%
Volume Shock
33%
Shock Capturing Schemes
33%
Calumet
33%
Street Crossing
33%
Large Urban Areas
33%
TUNEL
33%
Infiltration Process
33%
Saint-Venant Equations
33%
Urban Flooding
33%
Term Project
33%
Green-Ampt Method
33%
New Urban Development
33%
Storm Sewer Flow
33%
Dropshaft
33%
Critical Zone
33%
Second Module
33%
Kinematic Wave Approximation
33%
Subcritical Flow
33%
Flow Interception
33%
Drainage Control
33%
Urban Catchment
33%
Engineering
Supercritical Flow
100%
Illustrates
50%
Potential Application
50%
Wastewater Reclamation
50%
Storm Sewers
50%
Critical Zone
50%
Subcritical Flow
50%
Urban Flooding
50%
Urban Development
50%
Flow Velocity
50%
Boundary Condition
50%
Earth and Planetary Sciences
Supercritical Flow
100%
Flow Velocity
50%
Boundary Condition
50%
Water Reclamation
50%
Water Depth
50%
Urban Flooding
50%
Subcritical Flow
50%
Water Flow
50%
Urban Development
50%
Storm
50%