Amospheric Moisture Flashcards

1
Q

Atmospheric Lifting Mechanism -Convective

A

Warm air pushes up from the ground

Cold air sinks around it and the follows the path of the warm air

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2
Q

Orographic

A

Air hits mountain, rises up and cools to dew point, and then water vapor condenses
On the backside, the descending air warms

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3
Q

Frontal

A

In the midlatitudes, a cool air front pushes up a warm air front. Warm air has a much better capacity for carrying water, so when it rises it cools, condenses, and rain falls

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4
Q

Convergent

A

Near the ITCZ, colliding warm air fronts go upwards

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5
Q

Wind over the Mountain

A

Dry adiabatic rate 10/1000m
Saturated adiabatic rate 6/1000m

When air mass temp is same as dew point, it becomes saturated - change from dry so saturated AR

Goes up windward side, very wet, down leeward side, very dry

Lifting condensation level - when water can change from gas to liquid

Dew point can never be higher than the temperature - it always decreases with altitude - changes with the DAR/SAR

Goes down leeward side in the DAR - all that warm air going down comes from the latent heat transfer when water condensed: it released heat into the air

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6
Q

Global Precipitation Patterns

A

Low pressure - wet conditions -around equator - ITCZ

High pressure - dry conditions - around SubTropical High

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7
Q

ITCZ shifts with declination of the sun

A

In January, it is more south
In July, it is more north
Check p 168 figure 6-36 Avg Precipitation
moves pressure system with them

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8
Q

El Nino

A

Warm trade winds drag warm water west away from Peru
Cold water fills up the gap next to Peru
Upper atmosphere antitrade winds, Walker circulation, moves cold winds west to east
Usually high pressure next to Peru, very dry

Southern Osciallation - H pressure over N Australia, L pressure to the east in Tahiti

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9
Q

Onset

A

Warm air stocked in Indonesia begins to move East

Creates low pressure, warm waters near Peru

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