Convert watt/square inch [W/in^2] to watt/square meter [W/m^2] Online | Free heat-flux-density Converter

Watt per Square Inch [W/in²]


The unit watt per square inch (W/in²) measures heat flux density or power per unit area, representing the amount of energy transferred through 1 square inch of surface every second. One watt equals 1 joule per second, so 1 W/in² corresponds to 1 joule of energy passing through 1 in² every second.


This unit is commonly used in high-intensity applications with small areas, such as:



  • Laser beams or focused light sources



  • Electronic devices to measure power density on chips



  • Industrial heating processes with concentrated energy



Heat flux can be expressed as:


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

where q is heat flux in W/in², Q is energy in joules, A is area in in², and t is time in seconds.


Conversion to SI units:


1W/in²1.550×104W/m²1 \, \text{W/in²} \approx 1.550 \times 10^4 \, \text{W/m²}

While W/m² is the SI standard, W/in² is convenient in U.S. engineering, electronics, and laboratory experiments involving small surface areas, where reporting flux per square inch provides an intuitive measure of concentrated energy.


Watt per Square Meter [W/m²]


The unit watt per square meter (W/m²) measures heat flux density or radiant flux, representing the amount of energy transferred per unit area per unit time. One watt equals 1 joule per second, so 1 W/m² corresponds to 1 joule of energy passing through 1 square meter every second.


This unit is widely used in physics, engineering, meteorology, and solar energy studies to quantify energy transfer rates across surfaces. Examples of applications include:



  • Solar radiation: measuring sunlight incident on a surface



  • Heat transfer: quantifying conduction or convection per unit area



  • Building energy analysis: evaluating heat gain or loss through walls and roofs



Mathematically, the heat flux is expressed as:


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

where q is heat flux in W/m², Q is energy in joules, A is area in square meters, and t is time in seconds.


For example, solar constant at Earth’s surface is approximately 1361 W/m², indicating the power received per square meter from the Sun outside Earth’s atmosphere.


W/m² is the standard SI unit for energy flux density, replacing older units like cal/cm²·s or Btu/ft²·h, and is essential for thermal engineering, climatology, and renewable energy calculations.



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