Climatic Changes: Their Nature and CausesHuntington, Ellsworth
Science
Climatic Changes: Their Nature and Causes
Huntington, Ellsworth
Climatic changes; Climatology; Paleoclimatology
An increase in the width of the equatorial belt of low pressure under
the influence of broad tropical lands would be accompanied not only by
stronger and more widespread trade winds, but by a corresponding
strengthening of the subtropical belts of high pressure. The chief
reason would be the greater expansion of the air in the equatorial low
pressure belt and the consequent more abundant outflow of air at high
altitudes in the form of anti-trades or winds returning poleward above
the trades. Such winds would pile up the air in the region of the
high-pressure belt. Moreover, since the meridians converge as one
proceeds away from the equator, the air of the poleward-moving
anti-trades tends to be crowded as it reaches higher latitudes, thus
increasing the pressure. Unless there were a corresponding increase in
tropical cyclones, one of the most prominent results of the strengthened
trades and the intensified subtropical high-pressure belt at times of
broad lands in low latitudes would be great deserts. It will be recalled
that the trade-wind lowlands and the extra-tropical belt of highs are
the great desert belts at present. The trade-wind lowlands are desert
because air moving into warmer latitudes takes up water except where it
is cooled by rising on mountain-sides. The belt of highs is arid because
there, too, air is being warmed, but in this case by descending from
aloft.
Again, if the atmospheric pressure in the subtropical belt should be
intensified, the winds flowing poleward from this belt would necessarily
become stronger. These would begin as southwesterlies in the northern
hemisphere and northwesterlies in the southern. In the preceding chapter
we have seen that such winds, especially when cyclonic storms are few
and mild, are a powerful agent in transferring subtropical heat
poleward. If the strength of the westerlies were increased because of
broad lands in low latitudes, their efficacy in transferring heat would
be correspondingly augmented. It is thus evident that any change in the
extent of tropical lands during the geologic past must have had
important climatic consequences in changing the velocity of the
atmospheric circulation and in altering the transfer of heat from low
latitudes to high. When the equatorial and tropical lands were broad the
winds and currents must have been strong, much heat must have been
carried away from low latitudes, and the contrast between low and high
latitudes must have been relatively slight. As we have already remarked,
leading paleogeographers believe that changes in the extent of the lands
have been especially marked in low latitudes, and that on the average
there has been a decrease in the extent of land within the tropics.
Gondwana Land is the greatest illustration of this. In the same way, on
the numerous paleogeographic maps of North America, most
paleogeographers have shown fairly extensive lands south of the latitude
of the United States during most of the geologic epochs.[88]
Public-domain text, read in full here on John Shaqi.
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