Convert calorie (IT)/second/square centimeter to kilocalorie (IT)/hour/square meter Online | Free heat-flux-density Converter
Calorie (IT) per Second per Square Centimeter [cal(IT)/(s·cm²)]
The unit calorie (IT) per second per square centimeter, written as cal(IT)/(s·cm²), measures heat flux density or power per unit area. It represents the amount of International Table calories (1 cal(IT) = 4.1868 J) transferred through 1 cm² of surface every second.
This unit is often used in laboratory-scale heat transfer experiments, solar energy studies, and radiation measurements, especially when dealing with small surface areas where the calorie is convenient. Applications include:
Measuring solar energy intensity on small surfaces
Calorimetry experiments on samples
Laser or focused radiation studies
The heat flux can be expressed mathematically as:
where q is heat flux in cal(IT)/(s·cm²), Q is energy in calories, A is area in cm², and t is time in seconds.
Conversion to SI units:
While W/m² is the SI standard, cal(IT)/(s·cm²) is convenient for small-area, high-intensity heat measurements in laboratory or historical contexts.
Kilocalorie (IT) per Hour per Square Meter [kcal(IT)/(h·m²)]
The unit kilocalorie (IT) per hour per square meter, written as kcal(IT)/(h·m²), measures heat flux density or thermal power per unit area using the International Table kilocalorie (1 kcal(IT) = 4186.8 J). It represents the amount of heat energy transferred through 1 square meter of surface in 1 hour.
This unit is often used in building engineering, HVAC, and solar energy studies to quantify energy transfer through walls, roofs, or solar collectors. Typical applications include:
Heat gain or loss through building surfaces
Solar energy incident on rooftops or flat surfaces
Design of heating and cooling systems
Mathematically, heat flux is expressed as:
where q is heat flux in kcal(IT)/(h·m²), Q is total heat in kilocalories, A is area in m², and t is time in hours.
Conversion to SI units:
Although SI units such as W/m² are now standard, kcal(IT)/(h·m²) remains useful in legacy building and thermal engineering literature, providing an intuitive measure of energy transfer over time in kilocalories.
No conversions available for heat-flux-density.