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Rochester Combined Surge And Dropshaft Model Studies
Warren Q. Dahlin, Joseph M. Wetzel
St. Anthony Falls Laboratory
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Dive into the research topics of 'Rochester Combined Surge And Dropshaft Model Studies'. Together they form a unique fingerprint.
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Engineering
Rochester
100%
Ground Surface
100%
Deaeration
100%
Energy Engineering
66%
Entrained Air
66%
Surge Pressure
66%
Floors
33%
Construction Cost
33%
Reduced Velocity
33%
Air Mixture
33%
Combined Sewers
33%
Bellmouth
33%
Quarter Cylinder
33%
Surge Tanks
33%
Return Air
33%
Keyphrases
Rochester
100%
Dropshaft
100%
Surge Shaft
100%
Ground Surface
30%
Reaeration
30%
Vertical Shaft
30%
Air Slot
30%
Elbow
20%
Energy Levels
20%
Entrained Air
20%
Elevation Levels
20%
Surge Pressure
20%
Stormwater
10%
Dual Function
10%
Low Energy
10%
Kinetic Energy
10%
Low Elevation
10%
Upper Part
10%
Re-entrainment
10%
Construction Cost
10%
Pressure Relief
10%
Weir
10%
Reduced Velocity
10%
Water-air Mixture
10%
Sewage Water
10%
Construction Disturbance
10%
Air Vent
10%
Underground Tunnel
10%
Sanitary Sewage
10%
Combined Sewer Overflow
10%
Long Tunnel
10%
Return Airway
10%
Bell Mouth
10%
Shaft Component
10%
Surge Tank
10%
Earth and Planetary Sciences
Kinetic Energy
100%
Relieving
100%