Karnataka

Rabkavi-Banhatti, India Climate

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

The warmest month is April, with an average high of 39°C; the coldest is December, with an average low of 15°C. A normal year brings 627 mm of precipitation.

Temperature through the year

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

Normal daily high and low temperature at Rabkavi-Banhatti through the year, in °C, with the record for each date.01020304050JanFebMarAprMayJunJulAugSepOctNovDec
  • Normal low
  • Normal high
  • Reanalysis extreme high
  • Reanalysis extreme low

Normals for Sep 25

Normal high
30°C
Normal low
21°C
Reanalysis high
35°Cin 2015
Reanalysis low
18°Cin 1994
Chance of a wet day
58%
Daylight
12 h 05 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
January32°C15°C36°C (2009)9°C (1991)0 mm0.0
February35°C17°C40°C (2016)11°C (1993)3 mm0.0
March38°C20°C42°C (1996)12°C (2015)6 mm3.1
April39°C23°C43°C (1998)16°C (2008)18 mm6.0
May38°C24°C43°C (2001)19°C (1995)37 mm9.3
June32°C23°C43°C (1998)20°C (1991)111 mm21.0
July29°C22°C35°C (2014)19°C (2011)136 mm24.8
August29°C21°C34°C (2015)20°C (2017)118 mm21.7
September30°C21°C36°C (2003)16°C (1994)96 mm18.0
October31°C20°C37°C (2002)14°C (1992)81 mm12.4
November31°C17°C35°C (2002)10°C (2007)18 mm3.0
December31°C15°C36°C (2015)10°C (1994)3 mm0.0
Year33°C20°C627 mm119

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.

627 mm in a normal year, most in July.

Chance of a wet day

The chance of at least 1 mm of precipitation in the reanalysis on each date at Rabkavi-Banhatti, in percent.020406080100JanFebMarAprMayJunJulAugSepOctNovDec
  • Chance of a wet day

Humidity and comfort

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

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
January7°C41%90%8%2%0%0%0%
February6°C34%94%5%1%0%0%0%
March8°C33%87%10%2%1%0%0%
April13°C39%50%30%18%2%0%0%
May17°C51%8%24%37%29%3%0%
June21°C73%0%0%4%63%32%0%
July21°C80%0%0%0%65%35%0%
August21°C82%0%0%0%74%26%0%
September20°C80%0%0%5%66%29%0%
October19°C74%5%9%21%49%17%0%
November15°C64%31%19%27%22%1%0%
December10°C52%71%15%12%2%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 February, with the sky 17 percent covered on average; the cloudiest is July, at 88 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 July, averaging 26.6 km/h at 10 meters (33 feet) above the ground.

Daylight and sunshine

The longest day is Jun 16, with 13 h 07 min of daylight; the shortest is Dec 14, with 11 h 09 min.

Hours of daylight at Rabkavi-Banhatti 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 Rabkavi-Banhatti 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.