
Explore open and closed cooling towers, classified by draft as induced or forced, and assess performance, water concentration, and energy efficiency with components like water distributing nozzles and collectors.
Examine how cooling towers transfer heat from hot water to air to save energy in hvac and power plants; cover open/closed types, drafting, packing, evaporation, makeup water, and blowdown.
Size cooling towers correctly to optimize energy use, minimize water loss, and control blowdown. Maintain water quality, prevent corrosion and scaling, and use variable frequency drives to save energy.
Assess cooling tower performance in power plants by collecting data on inlet and outlet water temperatures, flow, and power, then compute evaporation loss, blowdown, and make-up water.
Learn how cooling towers use evaporative cooling to exchange heat with warm water, covering draft types, components, spray nozzles, troubleshooting, and proper sizing for efficiency.
Benefits of the course
About Cooling Tower
Applications of Cooling Tower
Types of Cooling Tower
Natural and Artificial cooling tower
Performance of CT like approach, range, effectiveness, capacity, COC blowdown, drift/ Fill material
Components of Cooling Tower
Different materials of cooling tower
Sizing of Cooling Tower
Reducing water loss in CT
Reduce blowdown in Cooling Tower
Maintenance of Cooling Tower
Minimize corrosion and scale in Cooling Tower
Variable frequency drives for Cooling Tower
Evaluate performance of existing cooling tower
Troubleshooting of cooling tower
Checklist of energy saving in cooling tower