Climate Overview
The climate in Aranuka Airport is hot. The average annual temperature is 28°C and approximately 1275mm of precipitation falls per year. Aranuka Airport receives a notable amount of rainfall throughout the year, including during its driest month. Aranuka Airport sits near the equator, so seasonal temperature differences are minimal throughout the year.
Temperature
Aranuka Airport has relatively stable temperatures year-round, staying within a 1°C range. The warmest month is June, when average highs reach 28°C and the mean temperature sits around 28°C. March is the coolest month, with minimum temperatures around 27°C and an average of 27°C. Daily temperature variation is modest, with an average difference of 1°C between highs and lows.
Precipitation
Aranuka Airport is a fairly wet location, receiving approximately 1275mm of precipitation annually, which averages out to around 106mm per month. The wettest month is March, averaging 196mm of rainfall. January and April also tend to see above-average precipitation. The driest month is November, with just 38mm. That's 157mm less than March, the wettest month. Rainfall is heavily concentrated in certain months, creating a distinct wet and dry season. Visitors should plan around these patterns, as the difference between peak and low months is dramatic.
Wind
Aranuka Airport is mildly breezy, with an average annual wind speed of 19km/h. For context, sustained winds below 12km/h are generally light, while anything above 25km/h is considered strong. The windiest month is February, averaging 22km/h, noticeable enough to affect lighter outdoor activities. The calmest conditions occur in June, with average winds dropping to 16km/h, making it an ideal period for wind-sensitive activities. Wind conditions are fairly consistent throughout the year, varying by only 6km/h between the calmest and windiest months. Wind tends to be stronger during winter months, driven by seasonal pressure systems. The seasonal averages break down to 21km/h in winter, 19km/h in spring, 17km/h in summer, 19km/h in autumn.
Seasons
87 days until Winter
It is currently autumn in Aranuka Airport, which began on September 23, 2026. Aranuka Airport sits near the equator, so the traditional four-season cycle is less pronounced. Temperatures remain relatively stable year-round. The warmest period peaks in June at around 28°C, while the coldest stretch bottoms out in March near 27°C. Winter is next, beginning on December 21, 2026 (87 days from now).
Spring
Temperatures range from 27 to 28°C. Rainfall is heavy, totalling around 449mm across the season with a monthly average of 150mm. Winds are moderate at around 19km/h. An umbrella or waterproof jacket is advisable as spring showers are frequent.
Summer
Temperatures range from 27 to 28°C. Precipitation is moderate at around 249mm for the season, averaging 83mm per month. Winds are moderate at around 17km/h. Light, breathable clothing is ideal. Perfect conditions for outdoor activities.
Autumn
Temperatures range from 27 to 28°C. Rainfall is relatively light, with around 130mm over the season and a monthly average of 43mm. Winds are moderate at around 19km/h. Layered clothing works best as temperatures gradually cool. Enjoy the crisp air and changing scenery.
Winter
Temperatures range from 27 to 28°C. Rainfall is heavy, totalling around 447mm across the season with a monthly average of 149mm. Winds are moderate at around 21km/h. A light jacket or sweater is usually sufficient, though cooler evenings may call for an extra layer.
Monthly Climate Data
The table below shows monthly climate averages for Aranuka Airport based on historical weather data. Min and max temperatures represent typical overnight lows and afternoon highs for each month, shown in degrees Celsius (°C). Precipitation is measured in millimetres (mm) and indicates the average total rainfall per month. Wind speed is the average sustained speed in kilometres per hour (km/h). All values are based on averages from over 10 years of historical weather data. The current month is highlighted for quick reference.