Meteorology: The Science of the AtmosphereTalman, Charles Fitzhugh
Science
Meteorology: The Science of the Atmosphere
Talman, Charles Fitzhugh
Meteorology
It is a matter of common knowledge that the air is found to be colder
the higher one ascends in the atmosphere. Thus, even in equatorial
regions, the tops of high mountains are mantled in perpetual snow. The
rate of this temperature decrease averages about 1 degree Fahrenheit
per 300 feet. Previous to the year 1902 meteorologists supposed
that the atmosphere continued to grow steadily colder in an upward
direction indefinitely; but in that year a Frenchman, M. Teisserenc de
Bort, who had sent aloft hundreds of small unmanned balloons carrying
self-recording thermometers, announced that above a height of about
six and one-half miles the temperature ceased to fall. In fact, he
found that at about that level there was often a slight _increase_ of
temperature with increasing altitude for a certain distance upward, and
then a nearly uniform temperature as high as the balloons ascended.
This announcement was at first received with considerable skepticism,
but very soon similar observations were reported from other parts of
the world. A new “shell” of the atmosphere had been revealed--which,
as subsequent investigations proved, differs from the lower air in
other respects besides temperature--and it was at first named by
its discoverer the isothermal layer. He afterward substituted the
name _stratosphere_, now generally employed. In distinction from the
stratosphere, the part of the atmosphere lying below it is called the
_troposphere_.
The stratosphere has been explored in widely scattered parts of the
earth, and information concerning it is daily accumulating. Although
it extends over the whole world, the altitude at which it begins is by
no means uniform. The altitude is greater in summer than in winter; it
varies with the barometric pressure at the earth’s surface; and it is
decidedly greater over the equator than over the poles. The last fact
leads to an interesting paradox. Since over the equatorial regions
the temperature keeps on falling with ascent to a greater height than
in other latitudes, it is here that the lowest temperatures in the
atmosphere are found. A sounding balloon sent up from Batavia, Java,
in November, 1913, recorded 113° below zero Fahr., the lowest air
temperature ever observed. In middle latitudes the temperature of the
stratosphere averages something like 68° below zero Fahr.
The temperature of this interesting upper atmosphere varies a good
deal, both vertically and horizontally, but never shows the steady
vertical variation that characterizes the lower air. The stratosphere
contains no clouds (except occasional dust clouds), and has a
circulation quite distinct from that of the troposphere, the exact
nature of which, however, has not yet been determined.
Public-domain text, read in full here on John Shaqi.
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