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For Known Head Load For Unknown Head Load
Determine the total heat load. This is the combination of two factors, the heat dissipated within the enclosure and heat transfer from the surrounding area.
1. Convert the know heat load in watt to BTUH ( watt x 3.41 = BTUH) 2. Determine the Temperature difference between the surroundings, at maximum temperature, and the desired internal cabinet temperature. 3. Refer to the Temperature /Load Conversion Table and find the closed temperature differential. 4. Multiply the Value Shown for BTUH/sq. Ft. by the Surface Area ( in Square Feet) of the Cabinet 5. Add the equipment head load in BTUH, to the Surrounding heat Load to determine the Total Heat Load. Back to Top of Page
1. Determine the temperature difference between the surroundings at present temperature, and the present internal cabinet temperature. 2. Determine the temperature difference between the surroundings, at maximum temperature, and the present internal cabinet temperature. 3. Determine the difference between the present internal cabinet temperature the desired internal cabinet temperature ( if the desired temperature is lower) 4. Add the temperature difference of steps 1 through 3 to determine the total temperature difference 5. Refer to the Temperature /Load Conversion Table and find the closest temperature differential. 6. Multiply the value shown for BTUH/sq. Ft by the surface area ( in Surface Feet) of the cabinet. Back to Top of Page
Vortex Cooler Systems are designed to use normal factory air pressures of 70-100 PSIG ( 4.8-6.9 Bar). Unless Supply pressures are subject to wide fluctuation or are higher than 110 PSIG ( 7.6 Bar) use of a pressure regulator is not requires Determine capacities of Vortex Cooler systems at pressures less the 100 PSIG ( 6.9 Bar) as follows:
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