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Comment: Added air speed in free air measurements

We tested the airflow through our prototype module, inside a cardboard tube with some 3D printed adapters, using a UNI-T UT363 BT wind speed sensor.

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Fan Specs and Measurements:

Fan TypeQualtek FAD1-12025CBMW12Noctua NF-F12 iPPC 3000
Voltage (V)1212
Current Draw (A)0.1660.311
Power Usage (W) 1.9923.732
Rated Static Pressure (mm H2O) 2.877.63
Rated Airflow (CFM)81.0109.9
Spec Link https://www.digikey.ca/product-detail/en/qualtek/FAD1-12025CBMW12/Q640-ND/2600110https://noctua.at/en/nf-f12-industrialppc-3000-pwm/specification
Purchase Link https://www.digikey.ca/product-detail/en/qualtek/FAD1-12025CBMW12/Q640-ND/2600110https://www.amazon.ca/gp/product/B00KFCRATC/ref=ppx_yo_dt_b_asin_title_o01_s00?ie=UTF8&psc=1
Air Speed Measured Through Module (m/s)3.86.1
Air Speed Measured In Free Air (m/s)  6.510.6 


Calculations:

The diameter of the tube that the airspeed was measured through was 30mm.

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Volume of air through module = 706.86mm2 x 6.1m/s = 15.52 m3/h

Volume of air through module = 706.86mm2 x 3.8m/s = 9.67 m3/h

Volume of air through module = 706.86mm2 x 6.5m/s = 16.54 m3/h

Volume of air through module = 706.86mm2 x 10.6m/s = 26.97 m3/h


Results:

FanVolume of air through module (m3/h) Volume of air in free air (m3/h)
Noctua NF-F12 iPPC 300015.52 26.97
 Qualtek FAD1-12025CBMW129.67 16.54


We will use these results to calculate how much heat we are actually removing from the module after we modify the test rig to have thermistors in the input and output air paths.

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