Meteorology: The Science of the AtmosphereTalman, Charles Fitzhugh
Science
Meteorology: The Science of the Atmosphere
Talman, Charles Fitzhugh
Meteorology
The loftiest atmospheric phenomenon that we can observe directly is
the aurora, which has been photographed up to heights of more than
300 miles. The altitude of the aurora is determined by simultaneous
observations made at two or more points, and the same is true
of shooting stars and their trails, which seem to be especially
numerous between the levels of sixty and ninety miles. The so-called
“noctilucent clouds,” which shone by reflected sunlight throughout the
night for some years after the great eruption of Krakatoa and were
supposed to consist of fine dust from that volcano, were probably about
fifty miles above the earth. From the duration of twilight we infer
that above about forty-five miles the air is so tenuous that it cannot
reflect sunlight to the earth. Clouds furnish information concerning
the movements of the air at various levels up to ten miles or more.
Observations on mountains contribute further to our knowledge of the
atmosphere above the ordinary levels of habitation.
Of all methods of exploring the atmosphere in a vertical direction,
the most fruitful is the use of kites and balloons. In recent years
investigations of this character have become so extensive and so highly
specialized that they are regarded as forming a separate department
of meteorology, known as Aerology. It is by virtue of developments in
this field that meteorology has become “a science of three dimensions.”
Formerly meteorologists could do but little more than study the
_bottom_ of the weather, so to speak; but now they observe it and
chart it at all levels. The weather forecaster has daily reports of
conditions aloft to aid his predictions both for dwellers on _terra
firma_ and for the aeronaut; while the accumulated data of upper-air
observations are throwing new light on many difficult atmospheric
problems.
Scientific balloon ascents are no novelty. Some were made in the
eighteenth century, and many famous ones in the nineteenth, including
those of Biot, Gay-Lussac, Glaisher, Tissandier, and other daring
_savants_. The “record” height for such personal ascents was attained
in 1901, when Berson and Süring rose to 35,400 feet above Berlin.
Kites were sent up for meteorological purposes even before Benjamin
Franklin’s immortal experiment in 1752. Modern aerological methods
have, however, little in common with these pioneer undertakings.
Existing types of box kites, pilot balloons, sounding balloons, and
self-registering meteorological apparatus for upper-air research were
developed in the latter part of the nineteenth century, but their use
did not begin to bulk large in meteorology until about the beginning of
the present century. The epoch-making event in these undertakings was
the discovery of the _isothermal layer_.
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account