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Cooling Tower Make Up Water Flow Rate Calculation
Cooling Tower Make Up Water Flow Rate Calculation. This case study is aimed at calculating the unknown variables — that is, evaporation. As a result, water needs to be removed from the water basin at the bottom of the cooling tower.

C p is the specific heat of water (4.186 j/gm deg c) the calculator below can be used to determine the temperature delta or rise for a given cooling water application (heat load or. Concentration ratio or cycles of. Drift is entrained water in the tower discharge vapor.
The Cooling Tower Supplies F Gpm Of Cooling Water To Another Tower Which Does.
M = water flow rate. The water exits the cooling tower and is sent back to. (plot the relation of water or.
Rate Of Evaporation Is Approximately 1% Of The Circulation Flow For Each 10 °F (5.56 °C) Of Rise Between The Outlet And.
The cooling effect occurs because some of the water evaporates into a stream of air in. Hot water from heat exchangers is sent to the cooling tower. Drift is entrained water in the tower discharge vapor.
Use This Handy Calculator To Approximate Cooling Tower Water Use And Cycles Of Concendtration.
Drift loss varies between 0.1 and 0.2 % of water flow. Concentration ratio or cycles of. Alternatively, the evaporation loss can be calculated from the heat balance across the cooling tower.
Wait Around 5 Minutes Until The Cooling Tower Steady 6.
The evaporation and drift losses are e and d gpm respectively. Usually, you can get the condenser flow rate by referring to the water flow rate. Remember, trs can help with water saving designs and treatment systems.
As A Result, Water Needs To Be Removed From The Water Basin At The Bottom Of The Cooling Tower.
E = 0.00085 x r x 1.8 x c. Cooling towers design depend on the calculation of the following: Therefore the makeup water rate, m [m3/h] can be estimated as, 𝑀 = 𝐸 + 𝐵 + 𝐷 (1).
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