FREE MINING TOOL

Mining farm cooling calculator

Estimate simultaneous thermal load and ideal airflow for a mixed fleet, separating ASIC load from additional facility power.

Build your fleet

Up to 20 rows. All figures are editable; additional facility power is an illustrative allowance, not measured data.

Fleet row 1

Combined farm results

Total ASICs
100
Total hashrate
20,000.00 TH/s
ASIC running power
350,000 W
Additional facility power
35,000 W
Total running power
385,000 W
Total load
385.000 kW
Heat output
1,313,674.7 BTU/h
Cooling load
109.473 tons
Ideal all-air airflow
114,925 m³/h

Source: user inputs and referenced ASIC ratings, including derived power where applicable. Last updated: on input change. Additional facility power follows uptime for energy; thermal load assumes simultaneous operation.

This is a thermal estimate, not installed equipment sizing. Hydro loads need a separate coolant-loop design. Qualified professionals should assess the facility.

Formula and assumptions

Total heat = fleet running watts × 3.412142 BTU/h. Tons = BTU/h ÷ 12,000. Airflow = watts × 3,600 ÷ (1.2 × 1,005 × temperature rise).

This sums simultaneous fleet power and an explicit facility allowance. Only include power becoming heat inside the chosen thermal boundary; outdoor equipment may need a separate treatment.

Full methodology and limitations →

Worked example

Two 3,500 W references produce 23,884.994 BTU/h before overhead: approximately 1.990 cooling tons. A 10°C rise requires ideal airflow of 2,089.55 m³/h.

Arithmetic examples explain the tool; they are not live market observations. Reference specifications are linked on ASIC pages.

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Frequently asked questions

Why is uptime not editable here?

Cooling uses the scenario in which all listed equipment runs simultaneously.

Can hydro units use the airflow result?

It is an all-air thermal equivalent. Hydro units require separate coolant-loop design.

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