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Spring Weather at Ramón Villeda Morales International Airport Honduras

Daily high temperatures increase by 5°F, from 88°F to 94°F, rarely falling below 81°F or exceeding 100°F. The highest daily average high temperature is 94°F on May 10.

Daily low temperatures increase by 6°F, from 70°F to 76°F, rarely falling below 65°F or exceeding 78°F. The highest daily average low temperature is 76°F on May 26.

For reference, on May 10, the hottest day of the year, temperatures at Ramón Villeda Morales International Airport typically range from 75°F to 94°F, while on January 14, the coldest day of the year, they range from 68°F to 84°F.

Average High and Low Temperature in the Spring at Ramón Villeda Morales International Airport

Average High and Low Temperature in the Spring at Ramón Villeda Morales International AirportMarAprMay65°F65°F70°F70°F75°F75°F80°F80°F85°F85°F90°F90°F95°F95°F100°F100°F105°F105°FWinterSummerMay 1094°FMay 1094°F75°F75°FMar 188°FMar 188°F70°F70°FMay 3194°FMay 3194°F76°F76°FApr 192°FApr 192°F72°F72°FNowNow
The daily average high (red line) and low (blue line) temperature, with 25th to 75th and 10th to 90th percentile bands. The thin dotted lines are the corresponding average perceived temperatures.

The figure below shows you a compact characterization of the hourly average spring temperatures. The horizontal axis is the day, the vertical axis is the hour of the day, and the color is the average temperature for that hour and day.

Average Hourly Temperature in the Spring at Ramón Villeda Morales International Airport

Average Hourly Temperature in the Spring at Ramón Villeda Morales International AirportMarAprMay12 AM12 AM2 AM2 AM4 AM4 AM6 AM6 AM8 AM8 AM10 AM10 AM12 PM12 PM2 PM2 PM4 PM4 PM6 PM6 PM8 PM8 PM10 PM10 PM12 AM12 AMWinterSummerNowNowcomfortablecomfortablewarmhot
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
The average hourly temperature, color coded into bands. The shaded overlays indicate night and civil twilight.

Monaragala, Sri Lanka (10,740 miles away) and Reina Mercedes, Philippines (9,425 miles) are the far-away foreign places with temperatures most similar to Ramón Villeda Morales International Airport (view comparison).

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The spring at Ramón Villeda Morales International Airport experiences very rapidly increasing cloud cover, with the percentage of time that the sky is overcast or mostly cloudy increasing from 26% to 87%.

The clearest day of the spring is March 11, with clear, mostly clear, or partly cloudy conditions 75% of the time.

For reference, on June 13, the cloudiest day of the year, the chance of overcast or mostly cloudy conditions is 90%, while on January 27, the clearest day of the year, the chance of clear, mostly clear, or partly cloudy skies is 77%.

Cloud Cover Categories in the Spring at Ramón Villeda Morales International Airport

Cloud Cover Categories in the Spring at Ramón Villeda Morales International AirportMarAprMay0%100%10%90%20%80%30%70%40%60%50%50%60%40%70%30%80%20%90%10%100%0%WinterSummerMar 174%Mar 174%May 3113%May 3113%Apr 165%Apr 165%May 137%May 137%NowNowclearmostly clearpartly cloudyovercast
0% clear 20% mostly clear 40% partly cloudy 60% mostly cloudy 80% overcast 100%
The percentage of time spent in each cloud cover band, categorized by the percentage of the sky covered by clouds.

A wet day is one with at least 0.04 inches of liquid or liquid-equivalent precipitation. At Ramón Villeda Morales International Airport, the chance of a wet day over the course of the spring is very rapidly increasing, starting the season at 14% and ending it at 33%.

For reference, the year's highest daily chance of a wet day is 41% on June 28, and its lowest chance is 10% on March 29.

Probability of Precipitation in the Spring at Ramón Villeda Morales International Airport

Probability of Precipitation in the Spring at Ramón Villeda Morales International AirportMarAprMay0%0%5%5%10%10%15%15%20%20%25%25%30%30%35%35%40%40%45%45%WinterSummerMar 2910%Mar 2910%Mar 114%Mar 114%May 3133%May 3133%May 114%May 114%NowNowrain
The percentage of days in which various types of precipitation are observed, excluding trace quantities: rain alone, snow alone, and mixed (both rain and snow fell in the same day).

Rainfall

To show variation within the season and not just the monthly totals, we show the rainfall accumulated over a sliding 31-day period centered around each day.

The average sliding 31-day rainfall during the spring at Ramón Villeda Morales International Airport is rapidly increasing, starting the season at 1.5 inches, when it rarely exceeds 3.6 inches or falls below 0.1 inches, and ending the season at 3.2 inches, when it rarely exceeds 6.2 inches or falls below 0.6 inches.

The lowest average 31-day accumulation is 1.0 inches on April 7.

Average Monthly Rainfall in the Spring at Ramón Villeda Morales International Airport

Average Monthly Rainfall in the Spring at Ramón Villeda Morales International AirportMarAprMay0 in0 in1 in1 in2 in2 in3 in3 in4 in4 in5 in5 in6 in6 in7 in7 in8 in8 inWinterSummerApr 61.0 inApr 61.0 inMar 11.5 inMar 11.5 inMay 313.2 inMay 313.2 inMay 11.4 inMay 11.4 inNowNow
The average rainfall (solid line) accumulated over the course of a sliding 31-day period centered on the day in question, with 25th to 75th and 10th to 90th percentile bands. The thin dotted line is the corresponding average snowfall.

Over the course of the spring at Ramón Villeda Morales International Airport, the length of the day is rapidly increasing. From the start to the end of the season, the length of the day increases by 1 hour, 8 minutes, implying an average daily increase of 45 seconds, and weekly increase of 5 minutes, 15 seconds.

The shortest day of the spring is March 1, with 11 hours, 51 minutes of daylight and the longest day is May 31, with 12 hours, 59 minutes of daylight.

Hours of Daylight and Twilight in the Spring at Ramón Villeda Morales International Airport

Hours of Daylight and Twilight in the Spring at Ramón Villeda Morales International AirportMarAprMay0 hr24 hr4 hr20 hr8 hr16 hr12 hr12 hr16 hr8 hr20 hr4 hr24 hr0 hrWinterSummerMar 1912 hr, 6 minMar 1912 hr, 6 minnightnightdaydayMay 3112 hr, 59 minMay 3112 hr, 59 minMay 112 hr, 42 minMay 112 hr, 42 minNowNow
The number of hours during which the Sun is visible (black line). From bottom (most yellow) to top (most gray), the color bands indicate: full daylight, twilight (civil, nautical, and astronomical), and full night.

The latest sunrise of the spring at Ramón Villeda Morales International Airport is 6:08 AM on March 1 and the earliest sunrise is 49 minutes earlier at 5:20 AM on May 31.

The earliest sunset is 5:59 PM on March 1 and the latest sunset is 20 minutes later at 6:19 PM on May 31.

Daylight saving time is not observed at Ramón Villeda Morales International Airport during 2024.

For reference, on June 20, the longest day of the year, the Sun rises at 5:22 AM and sets 13 hours, 3 minutes later, at 6:24 PM, while on December 21, the shortest day of the year, it rises at 6:13 AM and sets 11 hours, 13 minutes later, at 5:26 PM.

Sunrise & Sunset with Twilight in the Spring at Ramón Villeda Morales International Airport

Sunrise & Sunset with Twilight in the Spring at Ramón Villeda Morales International AirportMarAprMay12 AM2 AM4 AM6 AM8 AM10 AM12 PM2 PM4 PM6 PM8 PM10 PM12 AMWinterSummer5:20 AM5:20 AMMay 316:19 PMMay 316:19 PM6:08 AM6:08 AMMar 15:59 PMMar 15:59 PM5:46 AM5:46 AMApr 16:04 PMApr 16:04 PM5:27 AM5:27 AMMay 16:09 PMMay 16:09 PMSolarMidnightSolarMidnightSolarNoonSunriseSunsetNowNow
The solar day in the spring. From bottom to top, the black lines are the previous solar midnight, sunrise, solar noon, sunset, and the next solar midnight. The day, twilights (civil, nautical, and astronomical), and night are indicated by the color bands from yellow to gray.

The figure below presents a compact representation of the sun's elevation (the angle of the sun above the horizon) and azimuth (its compass bearing) for every hour of every day in the reporting period. The horizontal axis is the day of the year and the vertical axis is the hour of the day. For a given day and hour of that day, the background color indicates the azimuth of the sun at that moment. The black isolines are contours of constant solar elevation.

Solar Elevation and Azimuth in the Spring at Ramón Villeda Morales International Airport

Solar Elevation and Azimuth in the Spring at Ramón Villeda Morales International AirportMarAprMay12 AM12 AM2 AM2 AM4 AM4 AM6 AM6 AM8 AM8 AM10 AM10 AM12 PM12 PM2 PM2 PM4 PM4 PM6 PM6 PM8 PM8 PM10 PM10 PM12 AM12 AMWinterSummer0010202030304050506060708000101020303040405060607080NowNow
northeastsouthwest
Solar elevation and azimuth in the the spring of 2024. The black lines are lines of constant solar elevation (the angle of the sun above the horizon, in degrees). The background color fills indicate the azimuth (the compass bearing) of the sun. The lightly tinted areas at the boundaries of the cardinal compass points indicate the implied intermediate directions (northeast, southeast, southwest, and northwest).

The figure below presents a compact representation of key lunar data for the spring of 2024. The horizontal axis is the day, the vertical axis is the hour of the day, and the colored areas indicate when the moon is above the horizon. The vertical gray bars (new Moons) and blue bars (full Moons) indicate key Moon phases. The label associated with each bar indicates the date and time that the phase is obtained, and the companion time labels indicate the rise and set times of the Moon for the nearest time interval in which the moon is above the horizon.

Moon Rise, Set & Phases in the Spring at Ramón Villeda Morales International Airport

Moon Rise, Set & Phases in the Spring at Ramón Villeda Morales International AirportMarAprMay12 AM12 AM4 AM4 AM8 AM8 AM12 PM12 PM4 PM4 PM8 PM8 PM12 AM12 AMWinterSummerFeb 95:00 PMFeb 95:00 PMFeb 246:31 AMFeb 246:31 AMMar 103:01 AMMar 103:01 AMMar 251:01 AMMar 251:01 AMApr 812:22 PMApr 812:22 PMApr 235:50 PMApr 235:50 PMMay 79:23 PMMay 79:23 PMMay 237:54 AMMay 237:54 AMJun 66:38 AMJun 66:38 AMJun 217:09 PMJun 217:09 PM6:10 AM6:10 AM5:52 PM5:52 PM5:30 PM5:30 PM6:24 AM6:24 AM6:17 AM6:17 AM6:36 PM6:36 PM5:47 PM5:47 PM6:04 AM6:04 AM5:32 AM5:32 AM6:15 PM6:15 PM6:04 PM6:04 PM5:49 AM5:49 AM4:50 AM4:50 AM5:42 PM5:42 PM5:11 AM5:11 AM5:12 AM5:12 AM6:51 PM6:51 PM6:26 PM6:26 PM5:45 AM5:45 AMNowNow
The time in which the moon is above the horizon (light blue area), with new moons (dark gray lines) and full moons (blue lines) indicated. The shaded overlays indicate night and civil twilight.

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 chance that a given day will be muggy at Ramón Villeda Morales International Airport is increasing during the spring, rising from 91% to 100% over the course of the season.

The lowest chance of a muggy day during the spring is 90% on March 9.

For reference, on August 14, the muggiest day of the year, there are muggy conditions 100% of the time, while on January 13, the least muggy day of the year, there are muggy conditions 90% of the time.

Humidity Comfort Levels in the Spring at Ramón Villeda Morales International Airport

Humidity Comfort Levels in the Spring at Ramón Villeda Morales International AirportMarAprMay0%0%10%10%20%20%30%30%40%40%50%50%60%60%70%70%80%80%90%90%100%100%WinterSummerMar 990%Mar 990%May 31100%May 31100%Apr 195%Apr 195%May 199%May 199%NowNowmiserablemiserableoppressiveoppressivemuggymuggyhumidhumid
dry 55°F comfortable 60°F humid 65°F muggy 70°F oppressive 75°F miserable
The percentage of time spent at various humidity comfort levels, categorized by dew point.

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 at Ramón Villeda Morales International Airport is gradually decreasing during the spring, decreasing from 3.9 miles per hour to 3.1 miles per hour over the course of the season.

For reference, on February 24, the windiest day of the year, the daily average wind speed is 3.9 miles per hour, while on September 14, the calmest day of the year, the daily average wind speed is 2.9 miles per hour.

Average Wind Speed in the Spring at Ramón Villeda Morales International Airport

Average Wind Speed in the Spring at Ramón Villeda Morales International AirportMarAprMay0 mph0 mph1 mph1 mph2 mph2 mph3 mph3 mph4 mph4 mph5 mph5 mph6 mph6 mphWinterSummerMar 13.9 mphMar 13.9 mphMay 313.1 mphMay 313.1 mphApr 13.8 mphApr 13.8 mphMay 13.7 mphMay 13.7 mphNowNow
The average of mean hourly wind speeds (dark gray line), with 25th to 75th and 10th to 90th percentile bands.

The hourly average wind direction at Ramón Villeda Morales International Airport throughout the spring is predominantly from the north, with a peak proportion of 64% on April 20.

Wind Direction in the Spring at Ramón Villeda Morales International Airport

Wind Direction in the Spring at Ramón Villeda Morales International AirportNEMarAprMay0%100%20%80%40%60%60%40%80%20%100%0%WinterSummerNowNoweastnorthsouth
northeastsouthwest
The percentage of hours in which the mean wind direction is from each of the four cardinal wind directions, excluding hours in which the mean wind speed is less than 1.0 mph. The lightly tinted areas at the boundaries are the percentage of hours spent in the implied intermediate directions (northeast, southeast, southwest, and northwest).

Ramón Villeda Morales International Airport 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 surface water temperature at Ramón Villeda Morales International Airport is increasing during the spring, rising by 4°F, from 80°F to 84°F, over the course of the season.

Average Water Temperature in the Spring at Ramón Villeda Morales International Airport

Average Water Temperature in the Spring at Ramón Villeda Morales International AirportMarAprMay78°F78°F79°F79°F80°F80°F81°F81°F82°F82°F83°F83°F84°F84°F85°F85°F86°F86°F87°F87°FWinterSummerMar 180°FMar 180°FMay 3184°FMay 3184°FApr 182°FApr 182°FMay 183°FMay 183°FNowNow
The daily average water temperature (purple line), with 25th to 75th and 10th to 90th percentile bands.

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).

Temperatures at Ramón Villeda Morales International Airport are sufficiently warm year round that it is not entirely meaningful to discuss the growing season in these terms. We nevertheless include the chart below as an illustration of the distribution of temperatures experienced throughout the year.

Time Spent in Various Temperature Bands and the Growing Season in the Spring at Ramón Villeda Morales International Airport

Time Spent in Various Temperature Bands and the Growing Season in the Spring at Ramón Villeda Morales International AirportMarAprMay0%100%10%90%20%80%30%70%40%60%50%50%60%40%70%30%80%20%90%10%100%0%WinterSummer100%Apr 16100%Apr 16NowNowcomfortablewarmhotcoolsweltering
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
The percentage of time spent in various temperature bands. The black line is the percentage chance that a given day is within the growing season.

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.

The average accumulated growing degree days at Ramón Villeda Morales International Airport are very rapidly increasing during the spring, increasing by 2,720°F, from 1,517°F to 4,237°F, over the course of the season.

Growing Degree Days in the Spring at Ramón Villeda Morales International Airport

Growing Degree Days in the Spring at Ramón Villeda Morales International AirportMarAprMay1,500°F1,500°F2,000°F2,000°F2,500°F2,500°F3,000°F3,000°F3,500°F3,500°F4,000°F4,000°FWinterSummerMar 11,517°FMar 11,517°FMay 314,237°FMay 314,237°FApr 12,380°FApr 12,380°FMay 13,290°FMay 13,290°FNowNow
The average growing degree days accumulated over the course of the spring, with 25th to 75th and 10th to 90th percentile bands.

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 at Ramón Villeda Morales International Airport is decreasing during the spring, falling by 1.3 kWh, from 6.4 kWh to 5.1 kWh, over the course of the season.

The highest average daily incident shortwave solar energy during the spring is 6.9 kWh on March 28.

Average Daily Incident Shortwave Solar Energy in the Spring at Ramón Villeda Morales International Airport

Average Daily Incident Shortwave Solar Energy in the Spring at Ramón Villeda Morales International AirportMarAprMay0 kWh0 kWh1 kWh1 kWh2 kWh2 kWh3 kWh3 kWh4 kWh4 kWh5 kWh5 kWh6 kWh6 kWh7 kWh7 kWh8 kWh8 kWhWinterSummerMar 286.9 kWhMar 286.9 kWhMar 16.4 kWhMar 16.4 kWhMay 315.1 kWhMay 315.1 kWhMay 16.5 kWhMay 16.5 kWhNowNow
The average daily shortwave solar energy reaching the ground per square meter (orange line), with 25th to 75th and 10th to 90th percentile bands.

For the purposes of this report, the geographical coordinates of Ramón Villeda Morales International Airport are 15.453 deg latitude, -87.924 deg longitude, and 102 ft elevation.

The topography within 2 miles of Ramón Villeda Morales International Airport contains only modest variations in elevation, with a maximum elevation change of 121 feet and an average elevation above sea level of 99 feet. Within 10 miles contains only modest variations in elevation (2,772 feet). Within 50 miles contains large variations in elevation (8,970 feet).

The area within 2 miles of Ramón Villeda Morales International Airport is covered by cropland (36%), grassland (34%), trees (20%), and shrubs (10%), within 10 miles by trees (41%) and cropland (26%), and within 50 miles by trees (46%) and water (26%).

This report illustrates the typical weather at Ramón Villeda Morales International Airport, 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

Ramón Villeda Morales International Airport has a weather station that reported reliably enough during the analysis period that we have included it in our network. When available, historical temperature and dew point measurements are taken directly from this weather station. These records are obtained from NOAA's Integrated Surface Hourly data set, falling back on ICAO METAR records as required.

In the case of missing or erroneous measurements from this station, we fall back on records from nearby stations, adjusted according to typical seasonal and diurnal intra-station differences. For a given day of the year and hour of the day, the fallback station is selected to minimize the prediction error over the years for which there are measurements for both stations.

The stations on which we may fall back are Puerto Barrios Airport, Santa Rosa De Copan, La Ceiba Airport, Soto Cano Air Base, and Toncontín International Airport.

Other Data

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 airports and weather stations are provided by AskGeo.com .

Maps are © OpenStreetMap contributors.

Disclaimer

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.

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