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mesocyclones

A mesocyclone is a rotating updraft within a supercell thunderstorm and represents a mesoscale feature of organized convective weather. It consists of a persistent cyclonic rotation that spans a portion of the storm’s internal flow and vertical structure. Mesocyclones are most often associated with severe weather environments where wind shear creates organized, long-lived convection, though not every mesocyclone produces a tornado.

Formation of a mesocyclone involves the tilting of horizontal vorticity into the vertical by the storm’s updraft.

Detection and morphology are primarily through remote sensing. On Doppler radar, a mesocyclone may appear as

Relationship to tornadoes and weather: The presence of a mesocyclone signals potential for tornado development, especially

Occurrence and study: Mesocyclones are most common in mid-latitude regions with significant atmospheric shear, particularly during

Strong
vertical
wind
shear,
coupled
with
buoyant
air
and
sustained
inflow,
can
maintain
and
intensify
the
rotation.
The
resulting
rotating
updraft
can
persist
as
the
storm
evolves,
sometimes
feeding
a
productive
outflow
and
severe
weather.
a
cyclonic
velocity
couplet
within
the
storm’s
core
and
is
often
linked
to
a
hook-shaped
reflectivity
feature.
The
rotation
typically
resides
in
the
mid-levels
of
the
storm,
though
it
can
extend
through
lower
and
upper
portions
of
the
storm.
Not
all
mesocyclones
produce
tornadoes;
some
dissipate
or
generate
other
severe
hazards
such
as
large
hail
or
damaging
winds.
if
low-level
rotation
tightens
near
the
surface.
However,
tornado
formation
is
not
guaranteed,
and
many
mesocyclones
end
without
tornado
formation.
Mesocyclones
are
a
key
aspect
of
the
structure
and
dynamics
of
many
severe
thunderstorms,
contributing
to
their
longevity
and
hazardous
weather
potential.
the
warm
season
in
the
United
States
and
other
temperate
zones.
They
are
studied
using
Doppler
radar,
weather
radar
networks,
and
storm
observations
to
understand
their
role
in
severe-weather
outbreaks.