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Forecast for Louisville, Kentucky

Lat: 38.25N, Lon: 85.76W Wx Zone: KYZ030 ICAO Used: KLOU
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Overnight Sunday Sunday
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Monday Monday
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Tuesday Tuesday
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Wednesday Wednesday
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Thursday
Overnight: Light Rain Sunday: Partly Cloudy Sunday Night: Mostly Clear Monday: Sunny Monday Night: Mostly Clear Tuesday: Partly Cloudy Tuesday Night: Partly Cloudy Wednesday: Rain And Snow Wednesday Night: Partly Cloudy Thursday: Partly Cloudy
Light
Rain
Partly
Cloudy
Mostly
Clear
Sunny Mostly
Clear
Partly
Cloudy
Partly
Cloudy
Rain
And
Snow
Partly
Cloudy
Partly
Cloudy
Lo: 39°F Hi: 50°F
Lo: 31°F Hi: 50°F
Lo: 31°F Hi: 50°F
Lo: 31°F
Hi: 50°F
Lo: 31°F
Hi: 45°F
Hi: 45°F
Lo: 30°F
Hi: 45°F
Lo: 30°F
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Forecast Information
Dated: 817 PM EST SAT FEB 04 2012
Expires: 530 AM EDT SUN FEB 05 2012
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Description of ICAO "KLOU"
  • KLOU is at: Louisville, Bowman Field Airport
  • In the state of: (KY)
  • In the country of United States (US)
  • Station Latitude = 38.23N (decimal)
  • Station Longitude = 85.66W (decimal)
  • Station Elevation = 166 (meters)
  • Time Zone = Eastern Daylight Time (EDT)
  • Time Zone Offset from GMT = -4* (hours)
* Including Daylight Saving Time

The International Civil Aviation Organization (ICAO), an agency of the United Nations, codifies the principles and techniques of international air navigation. The ICAO Code is a 4-letter airport code used to determin current conditions at that location at the time of request.
Current Conditions
Mist
Mist
Temp: 43°F
Humidity: 88%
Wind Speed: N 5 MPH
Barometer: 30.07 in.
Dewpoint: 40°F
Heat Index: 43°F
Wind Chill: 40°F
Updated: 2:53 AM EDT SUN FEB 5 2012
Overnight - Feb 05 2012
Light Rain / Lo: 39°F / Pop: 50%
Light Rain Cloudy. Chance of light rain and areas of drizzle...Then areas of drizzle and slight chance of rain after midnight. Lows in the upper 30s. Northeast winds 5 to 10 mph. Chance of rain 50 percent.
Waxing Gibbous Moon Moon Phase: Waxing Gibbous Moon
Sunset: 7:08 PM EDT
Dusk: 7:36 PM EDT
Sunday - Feb 06 2012
Partly Cloudy / Hi: 50°F
Partly Cloudy Mostly cloudy until midday then becoming partly cloudy. Highs around 50. North winds 5 to 10 mph.
Dawn: 8:16 AM EDT
Sunrise: 8:44 AM EDT
Sunday Night - Feb 06 2012
Mostly Clear / Lo: 31°F
Mostly Clear Mostly clear. Lows in the lower 30s. North winds up to 10 mph.
Full Moon Moon Phase: Full Moon
Sunset: 7:09 PM EDT
Dusk: 7:37 PM EDT
Monday - Feb 07 2012
Sunny / Hi: 50°F
Sunny Sunny. Highs around 50. West winds up to 5 mph.
Dawn: 8:15 AM EDT
Sunrise: 8:43 AM EDT
Monday Night - Feb 07 2012
Mostly Clear / Lo: 31°F
Mostly Clear Mostly clear. Lows in the lower 30s. West winds around 5 mph.
Waning Gibbous Moon Moon Phase: Waning Gibbous Moon
Sunset: 7:10 PM EDT
Dusk: 7:38 PM EDT
Tuesday - Feb 08 2012
Partly Cloudy / Hi: 50°F / Lo: 31°F
Partly Cloudy Partly cloudy. Highs around 50. Lows in the lower 30s.
Dawn: 8:14 AM EDT
Sunrise: 8:42 AM EDT
Tuesday Night - Feb 08 2012
Partly Cloudy / Hi: 50°F / Lo: 31°F
Partly Cloudy Partly cloudy. Highs around 50. Lows in the lower 30s.
Waning Gibbous Moon Moon Phase: Waning Gibbous Moon
Sunset: 7:12 PM EDT
Dusk: 7:39 PM EDT
Wednesday - Feb 09 2012
Rain And Snow / Hi: 45°F / Pop: 20%
Rain And Snow Mostly cloudy with a 20 percent chance of rain and light snow. Highs in the mid 40s.
Dawn: 8:13 AM EDT
Sunrise: 8:41 AM EDT
Wednesday Night - Feb 09 2012
Partly Cloudy / Hi: 45°F / Lo: 30°F
Partly Cloudy Partly cloudy. Lows around 30. Highs in the mid 40s.
Waning Gibbous Moon Moon Phase: Waning Gibbous Moon
Sunset: 7:13 PM EDT
Dusk: 7:40 PM EDT
Thursday - Feb 10 2012
Partly Cloudy / Hi: 45°F / Lo: 30°F
Partly Cloudy Partly cloudy. Lows around 30. Highs in the mid 40s.
Dawn: 8:12 AM EDT
Sunrise: 8:40 AM EDT
Friday - Feb 11 2012
Partly Cloudy / Hi: 39°F / Lo: 25°F
Partly Cloudy Partly cloudy. Highs in the upper 30s. Lows in the mid 20s.
Dawn: 8:11 AM EDT
Sunrise: 8:39 AM EDT
Saturday - Feb 12 2012
Partly Cloudy / Hi: 39°F / Lo: 25°F
Partly Cloudy Partly cloudy. Highs in the upper 30s. Lows in the mid 20s.
Dawn: 8:10 AM EDT
Sunrise: 8:38 AM EDT
Sun & Moon Information Definitions

Moon Phase: The phases of the Moon are related to (actually, caused by) the relative positions of the Moon and Sun in the sky. For example, New Moon occurs when the Sun and Moon are quite close together in the sky. Full Moon occurs when the Sun and Moon are at nearly opposite positions in the sky - which is why a Full Moon rises about the time of sunset, and sets about the time of sunrise, for most places on Earth.

Waxing Gibbous Moon: The Moon appears to be more than one-half but not fully illuminated by direct sunlight. The fraction of the Moons disk that is illuminated is increasing.

Twilight: Also known as "Dawn" preceding Sunrise and "Dusk" following Sunset. There are three kinds of twilight defined: civil twilight, nautical twilight, and astronomical twilight. For computational purposes, civil twilight begins before sunrise and ends after sunset when the geometric zenith distance of the center of the Sun is 96 degrees - 6 degrees below a horizontal plane. The corresponding solar zenith distances for nautical and astronomical twilight are 102 and 108 degrees, respectively. That is, at the dark limit of nautical twilight, the center of the Sun is geometrically 12 degrees below a horizontal plane; and at the dark limit of astronomical twilight, the center of the Sun is geometrically 18 degrees below a horizontal plane.

Sunrise and sunset: For computational purposes, sunrise or sunset is defined to occur when the geometric zenith distance of center of the Sun is 90.8333 degrees. That is, the center of the Sun is geometrically 50 arcminutes below a horizontal plane. For an observer at sea level with a level, unobstructed horizon, under average atmospheric conditions, the upper limb of the Sun will then appear to be tangent to the horizon. The 50-arcminute geometric depression of the Sun's center used for the computations is obtained by adding the average apparent radius of the Sun (16 arcminutes) to the average amount of atmospheric refraction at the horizon (34 arcminutes).

Accuracy of rise/set computations: The times of rise and set phenomena cannot be precisely computed, because, in practice, the actual times depend on unpredictable atmospheric conditions that affect the amount of refraction at the horizon. Thus, even under ideal conditions (e.g., a clear sky at sea) the times computed for rise or set may be in error by a minute or more. Local topography (e.g., mountains on the horizon) and the height of the observer can affect the times of rise or set even more. It is not practical to attempt to include such effects in routine rise/set computations.

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