Convert foot pound/minute/square foot to calorie (th)/second/square centimeter Online | Free heat-flux-density Converter

Foot-Pound per Minute per Square Foot [ft·lb/(min·ft²)]


The unit foot-pound per minute per square foot, written as ft·lb/(min·ft²), measures energy flux density or power per unit area in the Imperial system. One foot-pound (ft·lb) is the energy required to move a force of 1 pound-force over a distance of 1 foot, equivalent to 1 ft·lb ≈ 1.35582 joules. Dividing by time (minutes) and area (ft²) gives the rate of energy transfer per unit area over time.


This unit is commonly used in U.S.-based engineering, building physics, and solar energy studies where energy flux through surfaces is measured. Applications include:



  • Heat transfer through walls, floors, or roofs



  • Solar radiation incident on building surfaces



  • Mechanical or thermal energy flux in industrial processes



Mathematically, the flux is expressed as:


q=EAtq = \frac{E}{A \cdot t}

where q is flux in ft·lb/(min·ft²), E is energy in foot-pounds, A is area in ft², and t is time in minutes.


Conversion to SI units:


1ft\cdotplb/(min\cdotpft²)0.2258W/m²1 \, \text{ft·lb/(min·ft²)} \approx 0.2258 \, \text{W/m²}

While modern practice favors W/m², ft·lb/(min·ft²) remains relevant in legacy U.S. building and thermal engineering literature, providing an intuitive measure of energy transfer per square foot per minute.




Calorie (th) per Second per Square Centimeter [cal(th)/(s·cm²)]


The unit calorie (th) per second per square centimeter, written as cal(th)/(s·cm²), measures heat flux density or power per unit area using the thermochemical calorie (1 cal(th) = 4.184 J). It represents the amount of heat energy transferred through 1 cm² of surface every second.


This unit is commonly used in laboratory-scale heat transfer experiments, solar energy studies, and focused radiation applications, especially where the energy is concentrated over a small surface area. Applications include:



  • Solar radiation intensity measurements



  • Laser or concentrated light experiments



  • Calorimetry experiments on small samples



Heat flux can be expressed mathematically as:


q=QAtq = \frac{Q}{A \cdot t}

where q is heat flux in cal(th)/(s·cm²), Q is energy in calories, A is area in cm², and t is time in seconds.


Conversion to SI units:


1cal(th)/(s\cdotpcm²)41,840W/m²1 \, \text{cal(th)/(s·cm²)} \approx 41,840 \, \text{W/m²}

While W/m² is the SI standard, cal(th)/(s·cm²) remains useful in laboratory and historical references, providing a practical measure for high-intensity, small-area heat transfer.





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