The Floors of the Ocean: 1. The North Atlantic: Text to accompany the physiographic diagram of the North AtlanticHeezen, Bruce C.
Science
The Floors of the Ocean: 1. The North Atlantic: Text to accompany the physiographic diagram of the North Atlantic
Heezen, Bruce C.
Ocean bottom
In a remotely situated oceanic area the factors controlling whether red
clay or _Globigerina_ ooze is laid down are largely related to depth
and temperature of the bottom water. These two factors are related to
those which control the solubility of the carbonate and thus the type
of bottom deposit. Emiliani and Edwards (1953), from a study of oxygen
isotopes in benthic Foraminifera in Tertiary deep-sea sediments from
the eastern Pacific, concluded that the temperature of Pacific bottom
water decreased 8° C. from the Eocene to the present. This should have
caused a great increase in the solution of carbonate assuming other
factors unchanged. Sub-bottom reflections then may also be interpreted
as the result of a change in the temperature or the circulation of
bottom water in the deep basin. Extensive, basin-wide sub-bottom
reflectors, whether the result of vast beds of ash or widespread
changes in pelagic sedimentation, imply events of global importance.
The further investigation and identification of these reflectors should
produce data of far-reaching application in geology, climatology, and
paleo-oceanography.
SUMMARY OF PROVINCE CHARACTERISTICS
The Atlantic Ocean floor consists of three major morphological
divisions: (1) continental margin, (2) ocean-basin floor, and (3)
Mid-Oceanic Ridge. The continental margin is formed by three categories
of provinces which represent (1) the submerged continental platform,
(2) the steep edge of the continental block, and (3) the raised or
depressed edge of the ocean floor. The topographic detail of the
continental margin is predominantly smooth except for the submarine
canyons and minor irregularities of the upper continental rise. A close
correspondence of topography and distribution of recent sediments
is apparent. For example, deep-sea sands are found in the submarine
canyons and on the canyon deltas of the lower continental rise. The
continental slope appears to be a thinly veneered or bare outcrop of
Tertiary and Mesozoic sediments. Individual topographic benches can
be traced for many miles along the strike. On the basis of published
descriptions and dating of dredged rock, certain prominent benches are
identified as the outcrop pattern of various Cretaceous and Tertiary
formations. The lower continental rise can be directly traced into
the outer ridge at Cape Hatteras. The upper continental-rise and the
marginal-trench provinces lie between the abrupt continental slope and
the outer ridge. Seismic-refraction measurements in the continental
margin indicate the greatest thickness of sedimentary rocks under the
upper continental rise. Thus if we consider the initial form as an
unfilled depression it would have been remarkably similar to the form
of the present marginal trenches.
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