Again, the isotherm is necessarily constructed from average temperatures
which have been corrected so as to be applicable to the same level. On
the equator, for instance, the summit of a lofty mountain is seen by
the snow on it to have a temperature not exceeding 32° F., while at
sea-level the temperature may be 90°. But observations have been made
showing the rate at which the temperature of the air diminishes as the
height increases, and although the rate varies in different places and
at different seasons, it may be taken roughly as one Fahrenheit degree
in 300 feet. Now if the mountain top with a temperature of say 30° F.
is known to be 18,000 feet above the sea, the addition of 1° for every
300 feet, or 60° altogether, would give the temperature of 90° as that
corresponding to sea-level. By applying such corrections, the isothermal
maps have been constructed to show the distribution of temperature at the
level of the sea. In order to compare the temperature he has observed
with that on the map the observer must calculate the average of his daily
observations for the month in question, and then make the correction for
the altitude of his station.
Similarly, in ascertaining from an isothermal map the mean temperature
of a particular place, care must be taken to subtract from the number
of degrees of the isotherm passing through the place one degree for
every 300 feet of elevation. Of course it will usually happen that no
isotherm as shown on the map runs through the point the mean temperature
of which it is desired to obtain. In that case the temperature at the
point will be found by considering its relative position between the two
nearest isotherms. Thus, if it lie half-way between the lines of 60°
and 70°—measured perpendicularly to the isotherms—the temperature of
65° may be assumed; if it lies one-tenth of the distance from 60° and
nine-tenths from 70°, it is safe to assume 61°; if three-tenths from 70°
and seven-tenths from 60°, then assume 67°. If the point lie in a loop
of a single isotherm, _e.g._, Cape St. Roque, the eastern point of South
America in the map for January, lying within the 80° isotherm, one can
only guess that the temperature is above 80° and it may be assumed to be
below 85°. The method of representation is unsatisfactory in such a case.
These facts being borne in mind, the study of isotherm maps will be found
to give an excellent general idea of the distribution of climate at
sea-level, and if the contour lines of 600 and 6000 feet are traced on
the maps the areas within which corrections of over -2° and -20° have to
be applied to the isothermal values to get the temperature at the place
will be easily recognised.
Public-domain text, read in full here on John Shaqi.
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