The new air world : $b The science of meteorology simplifiedMoore, Willis L. (Willis Luther)
Science
The new air world : $b The science of meteorology simplified
Moore, Willis L. (Willis Luther)
Meteorology
Since air, passing away from the equator, must pass successively
over parallels of latitude having less easterly velocity than that
with which it started its journey, it runs ahead of the earth, and,
relative to the surface of the earth, has a direction from the
southwest north of the equator, and from the northwest south of the
equator. Our current was divided at an altitude probably of six miles
above the equator, one half following the northern and the other half
the southern circuit. It was cooled by elevation and by radiation
outward to space and as a result gained in weight and gradually
descended, reaching the earth at about latitudes 30° north and south,
and causing an accumulation of air at those latitudes and the belt
of high pressure that irregularly surrounds the earth. In descending
in the belt the air breaks up into a number of anti-cyclonic systems,
sub-permanent highs or Centers of Action, which have so much to do
with initiating the migratory Highs and Lows that create the weather
of the earth, as will be fully explained in the Chapter on Weather
Forecasting. The intensity of these centers of action is modified and
their geographic positions shifted with change of season. (See Charts
1 and 2.)
[Illustration: CHART 2.—HIGH AND LOW CENTERS OF ACTION AND PREVAILING
WINDS OF THE GLOBE FOR JANUARY (Buchan).]
=Trade Winds.= But to return to the current that we left as it
divided above the equator (Figure 12) and descended on an inclined
plane to latitudes 30° north and south. It is cooler and dryer and
heavier than when it started to ascend and it has lost the thousand
miles per hour and more easterly velocity that it had at the equator
and now only has the velocity that belongs to latitude 30°; therefore
as it moves toward the equator from either side it lags behind
latitudes whose easterly velocity is greater, and it takes up a
direction partly toward the west, which, relative to the earth, makes
it a northeast wind in the Northern Hemisphere and a southeast wind
in the Southern Hemisphere. And thus is established a circulation the
lower part of which is known as the “trade winds.” (Figure 13.)
Navigators profit largely by availing themselves of the west winds
in the middle latitudes and of the east winds in the tropics. To
the daring and persistence of Columbus, and the force and constancy
of the trade winds which blew him westward, we owe the discovery of
America.
[Illustration: FIG. 13.—Average surface winds and pressure of the
globe.]
Public-domain text, read in full here on John Shaqi.
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