Electric Duct Heater Pressure Drop
Same concentration of wattage as an open coil heater.
Electric duct heater pressure drop. Low pressure drop because of the high percentage of open space across the heater open coils have very low pressure drop as compared to finned tubular heaters. Open coil duct heaters have listing of 22 5 kw per square foot. 20 000 3333 6 c. Thermolec electric duct heaters are designed for use in all forced air commercial and industrial hvac systems.
Proper air flow will prevent over temperature. Stab in electric heaters. This can result in reduced fan motor horsepower and makes it possible to retrofit open coil heaters into existing systems without changing the fan motor. Fresh air heater today s airtight homes and offices beg for fresh air.
Electric heater duct cassette sections. Formulas and graphs that will aid in your design include. Sheath temperature and air velocity graph. Low pressure drop because of the high percentage of open space across the heater open coils have very low pressure drop as compared to finned tubular heaters.
When we trap the heat excess humidity and. Inches h20 kw ft 2 x velocity in fpm 2 760 500 8. If airflow in the duct is expressed in fpm then a direct cross reference can be made by comparing the temperature of the air as it enters the duct heater to the kw rating on the table at the rated air velocity. Their applications vary from a partial or auxiliary nature to being the major or principal heat source in a building.
Wattage calculation formulas and table. Calculating pressure drop through a heater the chart shown below is the approximate pressure drop through a heater based on the velocity of the. However if pressure plates must be added to an open coil the pressure drop over the open coil far exceeds the drop over a. Electric heater thyrister control panels.
This can result in reduced fan 2 motor horsepower and makes it possible to retrofit open coil heaters into existing systems without changing the fan motor. Static pressure drop through an open coil heater is quite low and in most cases can be ignored when calculating system pressure drop. For tubular duct heaters the limitation is usually about 13kw per square foot. X 3 ft total watts equal 20 000 watts per sq.
To properly match a duct heater to an application the wattage air velocity and element watt density must be determined. Since an electric duct heater has a constant btu h output as long as the heater is energized a mini mum air velocity must be maintained through the heater. Duct size equal 2 ft. The pressure drop across a finned tubular heater is greater than across an open coil.