The first experiments with radar carried on board aircraft in organized
tropical storm reconnaissance were made in 1945. Within three years, all
the planes were carrying radar sets and had crew members whose sole
business it was to watch the radar scope and tell the pilots and weather
officers what kind of weather lay ahead.
Scarcely had these observations begun when the radar weather men
discovered an amazing fact. On the radar, a tropical storm looks like an
octopus with a doughnut for a body and arms that spiral around the body
as if the creature had been caught in a whirlpool. These arms are bands
of squally weather, oftentimes violent turmoil. Between the bands (or
octopus arms) the wind is furious, of course, but there is less
turbulence and cloudiness, and here the aircraft is in much less trouble
than in the squall bands. The cause of these violent bands spiraling
around the center has not been figured out yet for sure, but all
tropical storms have them, and the hunters are beginning to understand
them better.
The distance you can see from the radar station depends on how much
weather there is. If there are large patches of dense rain, they may
reflect all the rays back to the receiver and none may go through to
show other rain areas farther away. Because of this, the radar shows the
eye of the storm, but usually not the entire circle of clouds around a
distant eye. Not enough radar energy is left to reflect from the
opposite side of the eye. For this and other reasons it is necessary to
have an experienced man to interpret the images on the radar scope.
From a radar in an airplane at high levels, these limitations are not so
troublesome. Recently, too, the range of military radars has been
increased. Whereas the radar formerly was very useful in getting a view
of the eye from the aircraft, it did not give the eye’s geographical
position, which had to be determined by other means, except when the eye
was close enough to be seen from the coast. With increased range, the
aircraft can get between the hurricane center and the coast or an
island, and both appear on opposite sides of the radarscope. In such
cases, the distance and direction of the eye from a known point on a
coast or island can be figured.
In the last two years, the Navy has used radar methods of this type
extensively to obtain fixes of hurricane centers at night. In these
instances, the crews fly at greater heights than in daylight and can get
the eye and the coast on the scope at the same time. This gives a good
estimate of center location to supplement the daylight penetrations
without flying into the storm center in darkness. Actually, night
flights directly into hurricane centers were not profitable, as
non-radar observations of sea surface, clouds and winds were not
possible in darkness.
Public-domain text, read in full here on John Shaqi.
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