I have given, at the conclusion, a statement of the molecular theory of
glacier motion—a theory which I have been led to modify considerably on
one particular point.
There is one point to which I wish particularly to direct
attention—viz., that I have studiously avoided introducing into the
theories propounded anything of a hypothetical nature. There is not,
so far as I am aware, from beginning to end of this volume, a single
hypothetical element: nowhere have I attempted to give a hypothetical
explanation. The conclusions are in every case derived either from
facts or from what I believe to be admitted principles. In short, I
have aimed to prove that the theory of secular changes of climate
follows, as a necessary consequence, from the admitted principles of
physical science.
CHAPTER II.
OCEANS-CURRENTS IN RELATION TO THE DISTRIBUTION OF HEAT OVER
THE GLOBE.
The absolute Heating-power of Ocean-currents.—Volume of
the Gulf-stream.—Absolute Amount of Heat conveyed by
it.—Greater Portion of Moisture in inter-tropical Regions
falls as Rain in those Regions.—Land along the Equator
tends to lower the Temperature of the Globe.—Influence
of Gulf-stream on Climate of Europe.—Temperature of
Space.—Radiation of a Particle.—Professor Dove on Normal
Temperature.—Temperature of Equator and Poles in the Absence
of Ocean-currents.—Temperature of London, how much due to
Ocean-currents.
_The absolute Heating-power of Ocean-currents._—There is perhaps no
physical agent concerned in the distribution of heat over the surface
of the globe the influence of which has been so much underrated as that
of ocean-currents. This is, no doubt, owing to the fact that although
their surface-temperature, direction, and general influence have
obtained considerable attention, yet little or nothing has been done
towards determining the absolute amount of heat or of cold conveyed by
them or the resulting absolute increase or decrease of temperature.
The modern method of determining the amount of heat-effects in absolute
measure is, doubtless, destined to cast new light on all questions
connected with climate, as it has done, and is still doing, in every
department of physics where energy, under the form of heat, is being
studied. But this method has hardly as yet been attempted in questions
of meteorology; and owing to the complicated nature of the phenomena
with which the meteorologist has generally to deal, its application
will very often prove practically impossible. Nevertheless, it is
particularly suitable to all questions relating to the direct thermal
effects of currents, whatever the nature of these currents may happen
to be.
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