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Parametric Effects On The Performance Of An Industrial Cooling Tower
O. T. Bamimore
, S. O. Enibe
,
Paul A. Adedeji
Process, Energy and Environmental Technology Station
University of Nigeria
University of Ibadan
Research output
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Contribution to journal
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Article
›
peer-review
4
Citations (Scopus)
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Keyphrases
Parametric Effects
100%
Specific Enthalpy
100%
Industrial Cooling Tower
100%
Water Temperature
66%
Moisture Content
66%
System Efficiency
66%
Cooling Tower
66%
Air Moisture
66%
Merkel number
66%
Nanoparticles
33%
Production Efficiency
33%
Stationary Point
33%
Hot Water
33%
Heat Rejection
33%
Latent Heat
33%
Continuous Production
33%
Heat Exchange
33%
Counterflow
33%
Industrial Waste Heat
33%
Sensible Heat
33%
Optimal Operating Conditions
33%
Cooling Air
33%
Steel Rolling Mill
33%
Heat System
33%
Nodal Segments
33%
Optimal Operating Parameters
33%
Poppe Model
33%
Draft System
33%
Heat Engine
33%
Heat Removal Rate
33%
High Heat
33%
Make-up Water
33%
Thermodynamic Relations
33%
Engineering
Parametric Effect
100%
Specific Enthalpy
100%
System Efficiency
66%
Nanoparticle
33%
Removal Rate
33%
Heat Removal
33%
Heat Rejection
33%
Rolling Mill
33%
Sensible Heat
33%
Optimal Operating Condition
33%
Cooling Air
33%
Makeup Water
33%
Thermodynamic Relation
33%
Initial Condition
33%
Latent Heat
33%
Counterflow
33%
Hot Water
33%
Heat Engine
33%
Stationary Point
33%