Bolide fragmentation: What parts of asteroid 2008 TC3 survived to the ground?
Almahata Sitta
Ejecta
Supernova
Astronomy
Meteoroid
Ablation
Astrophysics
Mechanics
Asteroid belt
01 natural sciences
Fragmentation
0103 physical sciences
Formation and Evolution of the Solar System
Chondritic Meteorites
Breakup
Asteroid 2008 TC3
Asteroid
Physics
Enstatite
Astronomy and Astrophysics
Geology
Chondrite
FOS: Earth and related environmental sciences
Astrobiology
Earth and Planetary Sciences
Bolide(s)
Geophysics
Physics and Astronomy
Physical Sciences
Exploration and Study of Mars
Mantle Dynamics and Earth's Structure
Meteorite
DOI:
10.1111/maps.13892
Publication Date:
2022-08-05T03:30:35Z
AUTHORS (7)
ABSTRACT
AbstractAsteroid 2008 TC3 impacted the Earth's atmosphere with a known shape and orientation. Over 600 meteorites were recovered at recorded locations, including meteorites of nonureilite type. From where in the asteroid did these stones originate? Here, we reconstruct the meteor lightcurve and study the breakup dynamics of asteroid 2008 TC3 in 3‐D hydrodynamic modeling. Two fragmentation regimes are found that explain the lightcurve and strewn field. As long as the asteroid created a wake vacuum, the fragments tended to move into that shadow, where they mixed with small relative velocities and surviving meteorites fell along a narrow strip on the ground. But when the surviving part of the backside and bottom of the asteroid finally collapsed at 33 km altitude, it created an end flare and dust cloud, while fragments were dispersed radially with much higher relative speed due to shock–shock interactions with a distorted shock front. Stones that originated in this final collapse tended to survive in a larger size and fell over a wider area at locations on the ground. Those locations to some extent still trace back to the fragment's original position in the asteroid. We classified the stones from this “large mass” area and used this information to glean some insight into the relative location of recovered ureilites and ordinary and enstatite chondrites in 2008 TC3.
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