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Stream Temperature Modeling of Miller Creek, Duluth, Minnesota
William R. Herb
, Timothy O. Erickson, Heinz G. Stefan
St. Anthony Falls Laboratory
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Dive into the research topics of 'Stream Temperature Modeling of Miller Creek, Duluth, Minnesota'. Together they form a unique fingerprint.
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Keyphrases
Minnesota
100%
Creek
100%
Duluth
100%
Miller
100%
Stream Temperature Model
100%
Stream Temperature
63%
Heat Loading
36%
Runoff Volume
27%
Air Temperature
27%
Stormwater
18%
Infiltration
18%
Baseflow
18%
Heat Input
18%
Runoff Temperature
18%
Vault
18%
Wet Ponds
18%
Climate Change
9%
Wetlands
9%
North Shore
9%
Groundwater
9%
Streamflow
9%
Trout
9%
Non-point Source
9%
Effluent
9%
Surface Runoff
9%
Runoff Modelling
9%
Seasonal Changes
9%
Modeling Tools
9%
Riparian Shading
9%
Low Flow
9%
Temperature Rise
9%
Infiltration Basin
9%
Impact Area
9%
Point Source
9%
Separation Model
9%
Reduction Temperature
9%
Loading Rate
9%
Large-scale Event
9%
Simulated Runoff
9%
Diurnal Changes
9%
Shading Condition
9%
Temperature Impact
9%
Bottom Outlet
9%
Modeling Packages
9%
Mall
9%
Outlet Structure
9%
SWMM Model
9%
Direct Reduction
9%
Mitigation Scenarios
9%
Wet Detention Pond
9%
Shade Levels
9%
Surface Runoff Modeling
9%
MINUHET
9%
Small Rainfall Events
9%
In Tandem
9%
Earth and Planetary Sciences
Minnesota
100%
Air Temperature
100%
Shading
100%
Stormwater
66%
Runoff
66%
Base Flow
66%
Actuator
33%
Climate Change
33%
Atmospherics
33%
Nonpoint Source
33%
Low Flow
33%
Loading Rate
33%
Engineering
Thermal Load
100%
Temperature Model
75%
Heat Input
50%
Source Point
50%
Base Flow
50%
Modeling Study
25%
Temperature Increase
25%
Direct Reduction
25%
Climate Change
25%
Loading Rate
25%
Point Estimate
25%
Climatic Change
25%