Aichi

Tahara, Japan Climate

NASA POWER reanalysis for the half-degree grid cell around Tahara, 1991-2020; a grid cell is an area average and can differ from a thermometer in town by several degrees

The warmest month is August, with an average high of 28°C; the coldest is February, with an average low of 7°C. A normal year brings 1903 mm of precipitation.

Temperature through the year

The normal daily high and low. The line marks today.

Normal daily high and low temperature at Tahara through the year, in °C, with the record for each date.010203040JanFebMarAprMayJunJulAugSepOctNovDec
  • Normal low
  • Normal high
  • Reanalysis extreme high
  • Reanalysis extreme low

Normals for Sep 25

Normal high
25°C
Normal low
23°C
Reanalysis high
28°Cin 2007
Reanalysis low
20°Cin 2010
Chance of a wet day
50%
Daylight
12 h 03 min

Month by month

Averages for 1991-2020. Wet days have at least 1 mm of precipitation in the reanalysis. Each month links to its own page.

MonthAvg highAvg lowWarmestColdestPrecipitationWet days
January11°C7°C19°C (1993)0°C (1997)68 mm6.2
February11°C7°C20°C (1993)1°C (2006)82 mm8.5
March14°C9°C20°C (2007)2°C (2001)136 mm9.3
April17°C13°C23°C (1998)6°C (1996)177 mm12.0
May21°C17°C26°C (2014)10°C (1991)189 mm12.4
June23°C21°C29°C (2011)16°C (1993)237 mm15.0
July27°C25°C33°C (2018)20°C (1993)226 mm15.5
August28°C26°C33°C (2013)22°C (1993)155 mm15.5
September26°C24°C31°C (2010)17°C (2003)246 mm15.0
October22°C20°C28°C (2013)12°C (1997)211 mm12.4
November18°C15°C25°C (2000)7°C (1992)108 mm9.0
December13°C10°C23°C (2004)3°C (2005)68 mm6.2
Year19°C16°C1903 mm137

Precipitation

Rain and melted snow together. The chance of a wet day is the share of days with at least 1 mm of precipitation in the reanalysis.

1903 mm in a normal year, most in September.

Chance of a wet day

The chance of at least 1 mm of precipitation in the reanalysis on each date at Tahara, in percent.020406080JanFebMarAprMayJunJulAugSepOctNovDec
  • Chance of a wet day

Humidity and comfort

NASA POWER reanalysis, 1991-2020, for the grid cell around Tahara.

The muggiest month is July, when 100 percent of days are muggy or worse, with a mean dew point of 18°C or more.

MonthDew pointHumidityDryComfortableHumidMuggyOppressiveMiserable
January5°C75%99%1%0%0%0%0%
February5°C73%98%2%0%0%0%0%
March7°C73%94%5%0%0%0%0%
April11°C75%66%25%8%1%0%0%
May15°C80%17%30%40%12%1%0%
June20°C85%0%5%24%47%23%1%
July23°C88%0%0%1%12%43%45%
August24°C85%0%0%0%5%28%67%
September21°C80%0%4%11%31%34%20%
October16°C75%11%30%31%21%6%0%
November12°C73%66%22%10%2%0%0%
December7°C75%96%3%0%0%0%0%

Comfort is judged by the day's mean dew point: dry below 13°C, comfortable to 16°C, humid to 18°C, muggy to 21°C, oppressive to 24°C, miserable above.

Clouds

Average share of the sky covered, from satellite (CERES and GEWEX SRB) by way of NASA POWER, 1991-2020.

The clearest month is December, with the sky 54 percent covered on average; the cloudiest is June, at 79 percent.

Wind

The mean wind speed over the whole day, from the MERRA-2 reanalysis by way of NASA POWER. Gusts run well above it.

The windiest month is January, averaging 31.3 km/h at 10 meters (33 feet) above the ground.

Daylight and sunshine

The longest day is Jun 15, with 14 h 29 min of daylight; the shortest is Dec 22, with 9 h 49 min.

Hours of daylight at Tahara through the year.0510152025JanFebMarAprMayJunJulAugSepOctNovDec
  • Day length

Solar energy

Average daily sunshine reaching the ground on a flat surface, in kilowatt-hours per square meter, clouds included.

Sunrise and sunset calendar

Month pages

The weather in Tahara in each month, day by day.

What this means

A normal is the average of the thirty years 1991 to 2020, the period the World Meteorological Organization and NOAA use for comparison. It is an average, not a forecast: most days depart from it, and some by a long way.

Where no station record is within reach, the extremes shown are the highest and lowest the reanalysis produced for the date in 1991-2020, not measured records.

Cloud, humidity, wind and sunshine come from a reanalysis: a weather model run over the past with every observation fed in, averaged over a grid cell about 50 km across. It is consistent everywhere on Earth; it smooths local detail such as a lake shore or a valley.

More for this place

Nearby

Sources

Cloud, humidity, wind and sunshine, and temperature and precipitation: NASA POWER (MERRA-2, CERES and GEWEX SRB), 1991-2020. The data was obtained from the National Aeronautics and Space Administration (NASA) Langley Research Center's Prediction Of Worldwide Energy Resources (POWER) project funded through the NASA Earth Science Division: POWER Daily API v2, accessed 2026-09-24. Sun and moon: computed with the NOAA solar equations and Meeus.