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Cooling tower water balance

Evaporation, drift, blowdown, makeup and the yearly cost of your cooling water — and how much higher cycles would save.

Inputs

Units:
Tower
Water
%
Cost
h/yr

Results

Need the full version for your plant?

The Cooling Tower Water Balance Excel tool does everything here and more: evaporation, drift, blowdown, makeup and water cost for open recirculating towers — three cases side by side. Print-ready report, any units, visible formulas, no macros.

How this calculator works

Evaporation = evaporation factor × circulating flow × range. Drift = drift % × flow. The salt balance gives blowdown + drift = evaporation ÷ (cycles − 1); makeup = evaporation + drift + blowdown. With drift credited, the highest possible cycles are (evaporation + drift) ÷ drift.

The example is the PlantCalcKit standard case, based on GPSA Engineering Data Book Example 11-7: 2,000 m³/h, 40/30/25 °C, 0.3 % drift, 4 cycles → evaporation 36, blowdown 6, makeup 48 m³/h.

The water balance of a cooling tower. Evaporation leaves the salts behind; blowdown and drift take salts out; makeup replaces all the water lost.
The water balance of a cooling tower. Evaporation leaves the salts behind; blowdown and drift take salts out; makeup replaces all the water lost.

Assumptions: steady operation; every loss other than evaporation (leaks, overflow, splash-out) counts as blowdown; cycles are measured with a salt that stays dissolved. References: Perry's Chemical Engineers' Handbook §12; GPSA Engineering Data Book Sec. 11; Marley/SPX Cooling Tower Fundamentals; Branan, Rules of Thumb for Chemical Engineers.

Learn the method step by step in Cooling Towers Made Simple, Chapter 9. The first three chapters are free.