Two Strengths of Ordinary Chondritic Meteoroids as Derived from their Atmospheric Fragmentation Modeling
arXiv:2006.07080 · doi:10.3847/1538-3881/ab9608
Abstract
The internal structure and strength of small asteroids and large meteoroids is poorly known. Observation of bright fireballs in the Earth's atmosphere can prospect meteoroid structure by studying meteoroid fragmentation during the flight. Earlier evaluations showed that meteoroid strength is significantly lower than that of the recovered meteorites. We present detailed study of atmospheric fragmentation of seven meteorite falls, all ordinary chondrites, and 14 other fireballs, where meteorite fall was predicted but the meteorites, probably also ordinary chondrites, were not recovered. All observations were made by the autonomous observatories of the European Fireball Network and include detailed radiometric light curves. A model, called the semi-empirical fragmentation model, was developed to fit the light curves and decelerations. Videos showing individual fragments were available in some cases. The results demonstrated that meteoroids do not fragment randomly but in two distinct phases. The first phase typically corresponds to low strengths of 0.04 - 0.12 MPa. In 2/3 of cases, the first phase was catastrophic or nearly catastrophic with at least 40% of mass lost. The second phase corresponds to 0.9 - 5 MPa for confirmed meteorite falls and to somewhat lower strengths, from about 0.5 MPa for smaller meteoroids. All these strengths are lower than tensile strengths of ordinary chondritic meteorites cited in the literature, 20 - 40 MPa. We interpret the second phase as being due by cracks in meteoroids and the first phase as separation of weakly cemented fragments, which reaccumulated at surfaces of asteroids after asteroid collisions.
Accepted for publication in AJ, author version, not corrected for style
References in corpus (4)
- Discovery of a new branch of the Taurid meteoroid stream as a real source of potentially hazardous bodies
- Small Solar System Bodies as granular media
- The Maribo CM2 meteorite fall - survival of weak material at high entry speed
- The January 7, 2015, superbolide over Romania and structural diversity of meter-sized asteroids
Cited by in corpus (22)
- The Global Meteor Network -- Methodology and First Results
- Data on 824 fireballs observed by the digital cameras of the European Fireball Network in 2017-2018. I. Description of the network, data reduction procedures, and the catalog
- High precision meteor observations with the Canadian Automated Meteor Observatory -- Data reduction pipeline and application to meteoroid mechanical strength measurements
- Data on 824 fireballs observed by the digital cameras of the European Fireball Network in 2017-2018. II. Analysis of orbital and physical properties of centimeter-sized meteoroids
- Atmospheric entry and fragmentation of small asteroid 2024 BX1: Bolide trajectory, orbit, dynamics, light curve, and spectrum
- Direct measurement of decimeter-sized rocky material in the Oort cloud
- Satellite observation of the dust trail of a major bolide event over the Bering Sea on December 18, 2018
- Perihelion history and atmospheric survival as primary drivers of the Earth`s meteorite record
- Catastrophic disruption of asteroid 2023 CX1 and implications for planetary defense
- The main asteroid belt: the primary source of debris on comet-like orbits
- Fireball characteristics derivable from acoustic data
- Semi-automatic meteoroid fragmentation modeling using genetic algorithms
- Destruction of eccentric planetesimals by ram pressure and erosion
- Diversity of new Martian crater clusters informs meteoroid atmospheric interactions
- BLADE: An Automated Framework for Classifying Light Curves from the Center for Near-Earth Object Studies (CNEOS) Fireball Database
- Orbit, meteoroid size, and cosmic ray exposure history of the Aguas Zarcas CM2 breccia
- The Role of Source Geometry and Atmospheric Propagation in Global Bolide Infrasound Detectability
- Predictions of Imminent Earth Impactors Discovered by LSST
- Consistency between dynamical modeling and photometrically derived masses of fireballs
- Century-Scale Effect of Climate Change on Meteorite Falls
- Deepest ever photographed Geminid with small but not negligible terminal mass
- From orbit to ground: pre-impact meteorite strewn field predictions for imminent impactors and meteorite recovery