Convert Btu (IT)/second/square foot to horsepower/square foot Online | Free heat-flux-density Converter
Btu (IT) per Second per Square Foot [Btu(IT)/(s·ft²)]
The unit Btu (IT) per second per square foot, written as Btu(IT)/(s·ft²), measures heat flux density or thermal power per unit area in the Imperial system using the International Table British Thermal Unit (1 Btu(IT) = 1055.06 J). It represents the amount of heat energy transferred through 1 square foot of surface every second.
This unit is commonly used in high-intensity heat transfer applications, solar energy studies, and engineering where energy flux per small surface area is important. Typical applications include:
Heat flux from industrial furnaces or heaters
Solar radiation incident on small surfaces
Thermal testing of materials
Heat flux can be expressed mathematically as:
where q is heat flux in Btu(IT)/(s·ft²), Q is energy in Btu(IT), A is area in ft², and t is time in seconds.
Conversion to SI units:
While W/m² is the SI standard, Btu(IT)/(s·ft²) is convenient in U.S. engineering and historical references, providing an intuitive measure of high-intensity heat flux per square foot per second.
Horsepower per Square Foot [hp/ft²]
The unit horsepower per square foot, written as hp/ft², measures power or energy flux density per unit area in the Imperial system. One horsepower (hp) is defined as 745.7 watts, representing the rate of doing work or energy transfer. Dividing by square feet gives the amount of power delivered or absorbed per unit area.
This unit is used in engineering, HVAC, and industrial applications to describe concentrated power distribution. Typical uses include:
Power output of engines or motors per area of a platform
Mechanical energy flux in manufacturing equipment
Evaluation of energy delivery systems on surfaces or panels
Mathematically, power flux can be expressed as:
where q is power per unit area (hp/ft²), P is power in horsepower, and A is area in ft².
Conversion to SI units:
Although W/m² is the SI standard, hp/ft² is convenient in U.S.-based applications and historical literature, providing an intuitive measure of high power density over a surface in familiar Imperial units.
No conversions available for heat-flux-density.