AI Data Center Water Footprint Calculator

Water

AI Data Center Water Footprint Calculator

Estimate data center cooling water use thermodynamically from AI power load, PUE, evaporative cooling and cooling-tower operation.

Average electrical power used by AI servers and other IT equipment.
Total facility power divided by IT equipment power.
Use 100% for a fully evaporative heat-rejection assumption. Use a lower value for hybrid or partly dry-cooled systems.
2400 kJ/kg is a practical screening value near typical cooling-tower water temperatures.
Higher cycles generally reduce cooling-tower blowdown, subject to water chemistry limits.
Optional. Enter known cooling-tower drift loss; leave at zero if unavailable.
Optional Indirect Water Footprint
Optional water-consumption factor for electricity generation. Keep at zero to calculate onsite cooling water only.
Onsite Cooling Water Requirement
Estimated cooling-tower makeup water over the selected operating period.
Energy & Heat
IT power load
Total facility power
Total heat rejection
Evaporative heat load
IT energy use
Facility energy use
Cooling Water
Evaporation rate
Blowdown rate
Drift rate
Total makeup-water rate
Total evaporation
Total blowdown
Total onsite makeup water
Onsite water per IT kWh
Total Water Footprint
Indirect electricity-related water
Combined operational water footprint
Method: Total Facility Power = IT Power x PUE For this screening model, consumed electrical power is assumed to ultimately appear as heat requiring rejection. Evaporative Heat Load = Facility Power x Evaporative Heat Fraction Evaporation Rate = Evaporative Heat Load / Latent Heat of Vaporization Because 1 kW equals 1 kJ/s: Evaporation kg/hour = Evaporative Heat kW x 3600 / Latent Heat kJ/kg Water density is approximated as 1 kg/L, therefore kg/hour is approximately equal to L/hour. Blowdown = Evaporation / (Cycles of Concentration – 1) Cooling Tower Makeup = Evaporation + Blowdown + Drift Onsite Water Intensity = Total Makeup Water / IT Electricity Use Optional Indirect Water = Facility Electricity Use x Electricity Water Intensity Combined Operational Water Footprint = Onsite Makeup Water + Indirect Electricity-Related Water The thermodynamic calculation estimates evaporative cooling-water demand. It does not imply that every data center uses evaporative cooling. Air-cooled and dry-cooled data centers can have substantially lower onsite water consumption. Hybrid systems should use an appropriate evaporative heat fraction. Actual cooling loads can also differ because of heat exported from the facility, heat recovery, climate, economizer operation, chiller performance and cooling-system configuration.