The Journal of Geology, May-June 1893: A Semi-Quarterly Magazone of Geology and Related SciencesVarious
Science
The Journal of Geology, May-June 1893: A Semi-Quarterly Magazone of Geology and Related Sciences
Various
Geology -- Periodicals
The present average southward slope of the highest terraces west of the
trap ridge from Northampton, Mass., to Farmington, Conn., forty-four
miles, is seven inches per mile,[49] and Professor Dana is inclined to
believe that this is approximately the slope at the time the terraces
were built. The character of the deposits shows that the current
which formed these deposits flowed south. The present river, flowing
north, falls twenty feet between Farmington and Tariffville, or 1⅔
feet per mile. The reversal of the river was probably determined by
two factors. Near the village of Farmington, the waters of 200 square
miles of territory are poured into the valley by the upper Farmington
and its tributary, the Pequabuck. During the terrace building stage
the great mass of débris contributed by these streams was deposited
where the steep gradient of the highlands was exchanged for the gentle
slope of the lowland. The main north and south valley was thus choked
by the débris of its tributaries and a long stretch of comparatively
still water extended north from Farmington, in which nearly horizontal
deposits were made. South of Farmington the terrace deposits are
much coarser than to the north, and the face of the terraces is much
greater. It is not impossible that, as the deposits between Farmington
and the Massachusetts state line approached nearer and nearer to
horizontality, the waters of the upper Farmington began to divide, part
flowing north and part south, the northward flowing portion finding an
outlet at the sag at Tariffville. If this was the case, the terraces
between Farmington and Tariffville must have had a slight slope to the
north. Their present southward slope could readily be accounted for by
the re-elevation of the land after the disappearance of the ice. This
explanation rests upon the ability of the upper Farmington and the
Pequabuck to have completely dammed the southward flowing current and
turned it northward by the great mass of their deposits. If this was
not the case, and there may be some doubt on the matter, the subsidence
which accompanied the later stages of the ice-retreat is the other
factor in the problem. It is estimated that an average depression of
1.25 feet[50] through the Connecticut valley would restore it to an
altitude approximating that at the close of glaciation. It seems highly
probable that these terrace-deposits were built before the maximum
depression was reached. If this was the case, the depression would be
efficient in reversing the Farmington, and this factor would supplement
the first. It is impossible at present to say to what extent these two
factors enter into the problem. That they are not mutually exclusive
is evident, and that they are together quantitatively competent seems
certain. Among the several hypotheses which have been considered, this
seems the most probable, and in the light of the present evidence the
most rational.
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