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Heat Index Calculator

Calculate the heat index using air temperature and relative humidity. See the estimated feels-like temperature instantly in both Fahrenheit and Celsius.

Calculate Heat Index

Relative Humidity 50%
Enter relative humidity from 0% to 100%.
Estimated Heat Index
0
°F

Enter the air temperature and relative humidity to calculate the estimated heat index.

Heat Index °F
Heat Index °C
Air Temperature
Relative Humidity
Waiting for input

What Is a Heat Index Calculator?

A Heat Index Calculator estimates how hot conditions may feel when air temperature and relative humidity are considered together. Heat index is sometimes described as an apparent or feels-like temperature.

High humidity can reduce the rate at which perspiration evaporates from the skin. Because evaporation is an important cooling process, hot and humid conditions can feel different from the measured air temperature alone.

Quick definition: Heat index combines air temperature and relative humidity to estimate an apparent temperature under the assumptions used by the calculation.

How to Use the Heat Index Calculator

You only need the air temperature and relative humidity to use this calculator. The result is automatically displayed in Fahrenheit and Celsius.

1

Enter Air Temperature

Enter the measured air temperature and select either Fahrenheit or Celsius.

2

Enter Relative Humidity

Use the humidity slider or enter a percentage directly into the humidity field.

3

Calculate Heat Index

Click the calculation button to see the estimated feels-like temperature in both °F and °C.

How Is Heat Index Calculated?

This calculator uses the commonly used Rothfusz regression for sufficiently hot conditions. The equation estimates heat index from temperature in Fahrenheit and relative humidity.

Heat Index Equation

HI = -42.379 + 2.04901523T + 10.14333127RH − 0.22475541TRH − 0.00683783T² − 0.05481717RH² + 0.00122874T²RH + 0.00085282TRH² − 0.00000199T²RH²

In the formula, T represents air temperature in degrees Fahrenheit and RH represents relative humidity as a percentage. For conditions outside the main range of the regression, this calculator uses a simpler preliminary apparent-temperature estimate.

Unit handling: If you enter Celsius, the calculator first converts the temperature to Fahrenheit, performs the calculation, and then converts the final heat index back to Celsius.

Heat Index Calculation Example

Suppose the air temperature is 90°F and relative humidity is 60%. The measured air temperature alone does not fully describe how the combination of heat and humidity may feel.

Using the heat-index equation gives an apparent temperature of approximately 100°F, although rounding can vary slightly depending on the calculation method and adjustments used.

This demonstrates why humidity becomes increasingly important when evaluating hot-weather conditions.

Heat Index vs. Air Temperature

Measurement What It Represents Inputs
Air Temperature Measured temperature of the surrounding air Temperature measurement
Heat Index Estimated apparent temperature under specified assumptions Temperature + humidity
Dew Point Temperature associated with air reaching saturation Temperature + humidity

What Affects How Hot It Feels?

Air Temperature

Air temperature is the main input. Heat-index calculations become particularly relevant during hot conditions.

Relative Humidity

Humidity affects evaporation. When humidity is high, perspiration can evaporate less efficiently, which can increase the apparent heat under hot conditions.

Direct Sunlight

Standard heat-index calculations are generally associated with shaded conditions. Direct solar exposure can make outdoor conditions feel hotter than the calculated value.

Wind and Air Movement

Air movement can affect evaporation and thermal comfort. The standard heat-index formula does not fully represent every wind condition.

Activity and Clothing

Physical activity, clothing, hydration, health, and individual characteristics can all affect how a person experiences hot conditions. A calculated heat index should therefore be treated as an environmental estimate rather than an exact personal response.

Understanding Your Heat Index Result

As heat index rises, environmental heat stress can become more significant. However, the number should be interpreted alongside actual conditions, including sun exposure, activity, airflow, and duration outdoors.

Heat Index General Category
Below 80°F / 27°C Below the commonly emphasized heat-index range
80–89°F / 27–32°C Increasing heat stress
90–102°F / 32–39°C High heat stress
103–124°F / 39–51°C Very high heat stress
125°F / 52°C and above Extreme heat conditions
Important: Heat index is an estimate based on specific assumptions. Conditions in direct sunlight and individual responses to heat can differ from the calculated value.

Heat Index Calculator FAQs

Heat index is an apparent-temperature estimate that combines air temperature and relative humidity to describe how hot conditions may feel under the calculation's assumptions.

Heat index can be calculated from air temperature and relative humidity using an empirical equation. This calculator uses the Rothfusz regression for sufficiently hot conditions.

Higher humidity can slow the evaporation of perspiration. Because evaporation helps remove heat from the body, hot and humid air can create a higher apparent temperature.

Yes. Select Celsius and enter the air temperature. The calculator handles the required unit conversion automatically and shows results in both Celsius and Fahrenheit.

No. Air temperature is a measured physical quantity, while heat index is an estimated apparent temperature calculated from air temperature and humidity.

Standard heat-index values are generally associated with shaded conditions. Direct sunlight can increase the heat experienced by a person beyond the standard calculated value.