Average Weather in Tehran Iran
In Tehran, the summers are hot, arid, and clear and the winters are very cold, dry, and mostly clear. Over the course of the year, the temperature typically varies from 34°F to 97°F and is rarely below 26°F or above 102°F.
Based on the beach/pool score, the best time of year to visit Tehran for hot-weather activities is from late May to late September.
The hot season lasts for 3.6 months, from May 28 to September 17, with an average daily high temperature above 87°F. The hottest day of the year is July 13, with an average high of 97°F and low of 77°F.
The cool season lasts for 3.5 months, from November 23 to March 7, with an average daily high temperature below 57°F. The coldest day of the year is January 23, with an average low of 34°F and high of 47°F.
Average High and Low Temperature
The figure below shows you a compact characterization of the entire year of hourly average temperatures. The horizontal axis is the day of the year, the vertical axis is the hour of the day, and the color is the average temperature for that hour and day.
Average Hourly Temperature
frigid 15°F freezing 32°F very cold 45°F cold 55°F cool 65°F comfortable 75°F warm 85°F hot 95°F sweltering
In Tehran, the average percentage of the sky covered by clouds experiences significant seasonal variation over the course of the year.
The clearer part of the year in Tehran begins around May 22 and lasts for 4.7 months, ending around October 13. On August 29, the clearest day of the year, the sky is clear, mostly clear, or partly cloudy 100% of the time, and overcast or mostly cloudy 0% of the time.
The cloudier part of the year begins around October 13 and lasts for 7.3 months, ending around May 22. On April 19, the cloudiest day of the year, the sky is overcast or mostly cloudy 37% of the time, and clear, mostly clear, or partly cloudy 63% of the time.
Cloud Cover Categories
0% clear 20% mostly clear 40% partly cloudy 60% mostly cloudy 80% overcast 100%
A wet day is one with at least 0.04 inches of liquid or liquid-equivalent precipitation. The chance of wet days in Tehran varies throughout the year.
The wetter season lasts 7.0 months, from September 18 to April 18, with a greater than 10% chance of a given day being a wet day. The chance of a wet day peaks at 19% on November 17.
The drier season lasts 5.0 months, from April 18 to September 18. The smallest chance of a wet day is 2% on June 5.
Among wet days, we distinguish between those that experience rain alone, snow alone, or a mixture of the two. Based on this categorization, the most common form of precipitation throughout the year is rain alone, with a peak probability of 18% on November 17.
Daily Chance of Precipitation
To show variation within the months and not just the monthly totals, we show the rainfall accumulated over a sliding 31-day period centered around each day of the year. Tehran experiences some seasonal variation in monthly rainfall.
The rainy period of the year lasts for 7.3 months, from September 16 to April 27, with a sliding 31-day rainfall of at least 0.5 inches. The most rain falls during the 31 days centered around November 6, with an average total accumulation of 1.1 inches.
The rainless period of the year lasts for 4.7 months, from April 27 to September 16. The least rain falls around June 17, with an average total accumulation of 0.1 inches.
Average Monthly Rainfall
The length of the day in Tehran varies significantly over the course of the year. In 2020, the shortest day is December 21, with 9 hours, 44 minutes of daylight; the longest day is June 21, with 14 hours, 35 minutes of daylight.
Hours of Daylight and Twilight
The earliest sunrise is at 5:47 AM on June 12, and the latest sunrise is 1 hour, 27 minutes later at 7:14 AM on January 7. The earliest sunset is at 4:50 PM on December 5, and the latest sunset is 3 hours, 34 minutes later at 8:24 PM on June 28.
Daylight saving time (DST) is observed in Tehran during 2020, starting in the spring on March 21, lasting 6.0 months, and ending in the fall on September 20.
Sunrise & Sunset with Twilight and Daylight Saving Time
We base the humidity comfort level on the dew point, as it determines whether perspiration will evaporate from the skin, thereby cooling the body. Lower dew points feel drier and higher dew points feel more humid. Unlike temperature, which typically varies significantly between night and day, dew point tends to change more slowly, so while the temperature may drop at night, a muggy day is typically followed by a muggy night.
The perceived humidity level in Tehran, as measured by the percentage of time in which the humidity comfort level is muggy, oppressive, or miserable, does not vary significantly over the course of the year, remaining a virtually constant 0% throughout.
Humidity Comfort Levels
dry 55°F comfortable 60°F humid 65°F muggy 70°F oppressive 75°F miserable
This section discusses the wide-area hourly average wind vector (speed and direction) at 10 meters above the ground. The wind experienced at any given location is highly dependent on local topography and other factors, and instantaneous wind speed and direction vary more widely than hourly averages.
The average hourly wind speed in Tehran experiences mild seasonal variation over the course of the year.
The windier part of the year lasts for 7.1 months, from February 11 to September 13, with average wind speeds of more than 5.4 miles per hour. The windiest day of the year is July 2, with an average hourly wind speed of 6.7 miles per hour.
The calmer time of year lasts for 4.9 months, from September 13 to February 11. The calmest day of the year is December 15, with an average hourly wind speed of 4.2 miles per hour.
Average Wind Speed
The predominant average hourly wind direction in Tehran varies throughout the year.
The wind is most often from the west for 4.0 months, from January 14 to May 15, with a peak percentage of 37% on April 17. The wind is most often from the south for 4.8 months, from May 15 to October 10, with a peak percentage of 49% on July 22. The wind is most often from the north for 2.3 months, from November 6 to January 14, with a peak percentage of 32% on January 1.
Tehran is located near a large body of water (e.g., ocean, sea, or large lake). This section reports on the wide-area average surface temperature of that water.
The average water temperature experiences significant seasonal variation over the course of the year.
The time of year with warmer water lasts for 3.5 months, from June 16 to October 2, with an average temperature above 76°F. The day of the year with the warmest water is August 7, with an average temperature of 82°F.
The time of year with cooler water lasts for 3.7 months, from December 26 to April 15, with an average temperature below 57°F. The day of the year with the coolest water is February 25, with an average temperature of 51°F.
Average Water Temperature
Best Time of Year to Visit
To characterize how pleasant the weather is in Tehran throughout the year, we compute two travel scores.
The tourism score favors clear, rainless days with perceived temperatures between 65°F and 80°F. Based on this score, the best times of year to visit Tehran for general outdoor tourist activities are from early May to early June and from early September to mid October, with a peak score in the last week of September.
The beach/pool score favors clear, rainless days with perceived temperatures between 75°F and 90°F. Based on this score, the best time of year to visit Tehran for hot-weather activities is from late May to late September, with a peak score in the last week of August.
For each hour between 8:00 AM and 9:00 PM of each day in the analysis period (1980 to 2016), independent scores are computed for perceived temperature, cloud cover, and total precipitation. Those scores are combined into a single hourly composite score, which is then aggregated into days, averaged over all the years in the analysis period, and smoothed.
Our cloud cover score is 10 for fully clear skies, falling linearly to 9 for mostly clear skies, and to 1 for fully overcast skies.
Our precipitation score, which is based on the three-hour precipitation centered on the hour in question, is 10 for no precipitation, falling linearly to 9 for trace precipitation, and to 0 for 0.04 inches of precipitation or more.
Our tourism temperature score is 0 for perceived temperatures below 50°F, rising linearly to 9 for 65°F, to 10 for 75°F, falling linearly to 9 for 80°F, and to 1 for 90°F or hotter.
Our beach/pool temperature score is 0 for perceived temperatures below 65°F, rising linearly to 9 for 75°F, to 10 for 82°F, falling linearly to 9 for 90°F, and to 1 for 100°F or hotter.
Definitions of the growing season vary throughout the world, but for the purposes of this report, we define it as the longest continuous period of non-freezing temperatures (≥ 32°F) in the year (the calendar year in the Northern Hemisphere, or from July 1 until June 30 in the Southern Hemisphere).
The growing season in Tehran typically lasts for 9.3 months (286 days), from around March 5 to around December 15, rarely starting before February 8 or after March 28, and rarely ending before November 22 or after January 5.
Time Spent in Various Temperature Bands and the Growing Season
frigid 15°F freezing 32°F very cold 45°F cold 55°F cool 65°F comfortable 75°F warm 85°F hot 95°F sweltering
Growing degree days are a measure of yearly heat accumulation used to predict plant and animal development, and defined as the integral of warmth above a base temperature, discarding any excess above a maximum temperature. In this report, we use a base of 50°F and a cap of 86°F.
Based on growing degree days alone, the first spring blooms in Tehran should appear around March 10, only rarely appearing before February 24 or after March 28.
Growing Degree Days
This section discusses the total daily incident shortwave solar energy reaching the surface of the ground over a wide area, taking full account of seasonal variations in the length of the day, the elevation of the Sun above the horizon, and absorption by clouds and other atmospheric constituents. Shortwave radiation includes visible light and ultraviolet radiation.
The average daily incident shortwave solar energy experiences extreme seasonal variation over the course of the year.
The brighter period of the year lasts for 3.4 months, from May 9 to August 22, with an average daily incident shortwave energy per square meter above 7.4 kWh. The brightest day of the year is June 16, with an average of 8.5 kWh.
The darker period of the year lasts for 3.4 months, from October 31 to February 11, with an average daily incident shortwave energy per square meter below 4.0 kWh. The darkest day of the year is December 15, with an average of 2.9 kWh.
Average Daily Incident Shortwave Solar Energy
For the purposes of this report, the geographical coordinates of Tehran are 35.694 deg latitude, 51.422 deg longitude, and 3,888 ft elevation.
The topography within 2 miles of Tehran contains only modest variations in elevation, with a maximum elevation change of 466 feet and an average elevation above sea level of 3,889 feet. Within 10 miles contains only modest variations in elevation (5,541 feet). Within 50 miles also contains extreme variations in elevation (16,493 feet).
The area within 2 miles of Tehran is covered by artificial surfaces (100%), within 10 miles by artificial surfaces (74%), and within 50 miles by shrubs (58%).
This report illustrates the typical weather in Tehran, based on a statistical analysis of historical hourly weather reports and model reconstructions from January 1, 1980 to December 31, 2016.
Temperature and Dew Point
There are 2 weather stations near enough to contribute to our estimation of the temperature and dew point in Tehran.
For each station, the records are corrected for the elevation difference between that station and Tehran according to the International Standard Atmosphere , and by the relative change present in the MERRA-2 satellite-era reanalysis between the two locations.
The estimated value at Tehran is computed as the weighted average of the individual contributions from each station, with weights proportional to the inverse of the distance between Tehran and a given station.
All data relating to the Sun's position (e.g., sunrise and sunset) are computed using astronomical formulas from the book, Astronomical Algorithms 2nd Edition , by Jean Meeus.
All other weather data, including cloud cover, precipitation, wind speed and direction, and solar flux, come from NASA's MERRA-2 Modern-Era Retrospective Analysis . This reanalysis combines a variety of wide-area measurements in a state-of-the-art global meteorological model to reconstruct the hourly history of weather throughout the world on a 50-kilometer grid.
Land Use data comes from the Global Land Cover SHARE database , published by the Food and Agriculture Organization of the United Nations.
Elevation data comes from the Shuttle Radar Topography Mission (SRTM) , published by NASA's Jet Propulsion Laboratory.
Names, locations, and time zones of places and some airports come from the GeoNames Geographical Database .
Time zones for aiports and weather stations are provided by AskGeo.com .
Maps are © Esri, with data from National Geographic, Esri, DeLorme, NAVTEQ, UNEP-WCMC, USGS, NASA, ESA, METI, NRCAN, GEBCO, NOAA, and iPC.
The information on this site is provided as is, without any assurances as to its accuracy or suitability for any purpose. Weather data is prone to errors, outages, and other defects. We assume no responsibility for any decisions made on the basis of the content presented on this site.
We draw particular cautious attention to our reliance on the MERRA-2 model-based reconstructions for a number of important data series. While having the tremendous advantages of temporal and spatial completeness, these reconstructions: (1) are based on computer models that may have model-based errors, (2) are coarsely sampled on a 50 km grid and are therefore unable to reconstruct the local variations of many microclimates, and (3) have particular difficulty with the weather in some coastal areas, especially small islands.
We further caution that our travel scores are only as good as the data that underpin them, that weather conditions at any given location and time are unpredictable and variable, and that the definition of the scores reflects a particular set of preferences that may not agree with those of any particular reader.