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Precipitation. From your text This is how your text shows the average precipitation over most of the...

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Precipitation
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Page 1: Precipitation. From your text This is how your text shows the average precipitation over most of the planet.

Precipitation

Page 2: Precipitation. From your text This is how your text shows the average precipitation over most of the planet.

From your text

Page 3: Precipitation. From your text This is how your text shows the average precipitation over most of the planet.

From your text

Page 4: Precipitation. From your text This is how your text shows the average precipitation over most of the planet.
Page 5: Precipitation. From your text This is how your text shows the average precipitation over most of the planet.
Page 6: Precipitation. From your text This is how your text shows the average precipitation over most of the planet.
Page 7: Precipitation. From your text This is how your text shows the average precipitation over most of the planet.
Page 8: Precipitation. From your text This is how your text shows the average precipitation over most of the planet.
Page 9: Precipitation. From your text This is how your text shows the average precipitation over most of the planet.

This is how your text shows the average precipitation over most of the planet.

Page 10: Precipitation. From your text This is how your text shows the average precipitation over most of the planet.

Another look, this one in color.

Page 11: Precipitation. From your text This is how your text shows the average precipitation over most of the planet.

From your text, clouds and precipitation form when humid air rises.

Here are three of the most common mechanisms for causing air to rise.

Orographic uplift Convection

Frontal and cyclonic lift

Page 12: Precipitation. From your text This is how your text shows the average precipitation over most of the planet.

Hawaii has some of the highest annual average precipitation records.

What are the factors which combine to produce the immense rainfall maximum seen here?

Page 13: Precipitation. From your text This is how your text shows the average precipitation over most of the planet.

Topographical map of Hawaii.

Page 14: Precipitation. From your text This is how your text shows the average precipitation over most of the planet.

http://rainfall.geography.hawaii.edu/rainfall.html

Page 15: Precipitation. From your text This is how your text shows the average precipitation over most of the planet.

Excluding Hawaii and Alaska, this is the U.S. average annual precipitation (rain + melted snow/ice)

http://www.prism.oregonstate.edu/normals/

Page 16: Precipitation. From your text This is how your text shows the average precipitation over most of the planet.

Same as the previous slide, but only for January.

Notice the interesting pattern around the Great Lakes.

http://www.prism.oregonstate.edu/normals

Page 17: Precipitation. From your text This is how your text shows the average precipitation over most of the planet.

Same as before, but only for July.

The most precipitation falls in the southeast. Why?

http://www.prism.oregonstate.edu/normals

Page 18: Precipitation. From your text This is how your text shows the average precipitation over most of the planet.

Last year in Oneonta

Total precipitation: 48.68”Average: 42.04” (1970-2000)

Page 19: Precipitation. From your text This is how your text shows the average precipitation over most of the planet.

July 224.69”

Page 20: Precipitation. From your text This is how your text shows the average precipitation over most of the planet.

What creates this pattern of precipitation in NY?

Page 21: Precipitation. From your text This is how your text shows the average precipitation over most of the planet.
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December-January-February average snowfall (inches)

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Page 30: Precipitation. From your text This is how your text shows the average precipitation over most of the planet.

Tropical Cyclones can have an immense effect on precipitation totals

Page 31: Precipitation. From your text This is how your text shows the average precipitation over most of the planet.
Page 32: Precipitation. From your text This is how your text shows the average precipitation over most of the planet.
Page 33: Precipitation. From your text This is how your text shows the average precipitation over most of the planet.

So, the pattern of precipitation in NY can be explained.

Page 34: Precipitation. From your text This is how your text shows the average precipitation over most of the planet.

Where you see rainfall (and where it is dry) is NOT random

Page 35: Precipitation. From your text This is how your text shows the average precipitation over most of the planet.

Precipitation Summary

1. To get precipitation you must have enough water vapor. Proximity to water sources will be common to places with high average precipitation.

2. Upward vertical motion is the second requirement. Places with high average precipitation also have strong mechanisms providing lift.

Lift mechanisms:Topographic relief (mountains)Convection or instabilityFronts or cyclones (both tropical and extratropical)

Wet and dry areas on the globe form patterns, suggesting a systematic organization of these elements. This is due to the General Circulation patterns.

Page 36: Precipitation. From your text This is how your text shows the average precipitation over most of the planet.

So, what happens in places that don’t get a lot of precipitation?

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Page 40: Precipitation. From your text This is how your text shows the average precipitation over most of the planet.

It’s normally dry in the southwest but abnormally so this year)

Page 41: Precipitation. From your text This is how your text shows the average precipitation over most of the planet.

“Normal” pattern (surface and upper air)

Drought pattern (1988)

Page 42: Precipitation. From your text This is how your text shows the average precipitation over most of the planet.

Some places are drier than others. Those that regularly experience upper air ridges will be dry, even during non-drought years.

Where does that occur on average around the world and WHY?

Next: General Circulation


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