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Btu (IT) per Hour per Square Foot [Btu(IT)/(h·ft²)]


The unit Btu (IT) per hour per square foot, written as Btu(IT)/(h·ft²), measures heat flux density or thermal power per unit area 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 hour.


This unit is widely used in U.S. building construction, insulation, HVAC, and solar energy studies to quantify energy transfer through walls, roofs, or floors. Typical applications include:



  • Heat loss or gain through building surfaces



  • Solar radiation incident on horizontal surfaces



  • Design and analysis of heating and cooling systems



Heat flux is mathematically expressed as:


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

where q is heat flux in Btu(IT)/(h·ft²), Q is energy in Btu(IT), A is area in ft², and t is time in hours.


Conversion to SI units:


1Btu(IT)/(h\cdotpft²)5.678W/m²1 \, \text{Btu(IT)/(h·ft²)} \approx 5.678 \, \text{W/m²}

Although modern practice uses W/m², Btu(IT)/(h·ft²) remains prevalent in U.S. building codes, insulation tables, and historical thermal data, offering a convenient measure of energy transfer per square foot per hour.


Erg per Hour per Square Millimeter [erg/(h·mm²)]


The unit erg per hour per square millimeter, written as erg/(h·mm²), measures energy flux density or power per unit area using the cgs system. An erg is defined as the energy required to move 1 dyne over 1 centimeter, or 1 erg = 10⁻⁷ joules. Dividing by hour and mm² provides the rate of energy transfer per small area over time.


This unit is typically used in laboratory-scale physics, radiation experiments, and surface energy studies where small areas and low energy transfers are involved. Applications include:



  • Measuring radiation incident on tiny surfaces



  • Calorimetry experiments on small samples



  • Micro-scale energy transfer studies in materials science



Heat or energy flux can be expressed mathematically as:


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

where q is energy flux in erg/(h·mm²), E is energy in ergs, A is area in mm², and t is time in hours.


Conversion to SI units:


1erg/(h\cdotpmm²)2.78×108W/m²1 \, \text{erg/(h·mm²)} \approx 2.78 \times 10^{-8} \, \text{W/m²}

While largely of historical or specialized use, erg/(h·mm²) provides a convenient cgs-based measure for micro-scale, low-intensity energy transfer in scientific experiments.



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