Statistical Tests of Chondrule Sorting
arXiv:1110.4111 · doi:10.1111/j.1945-5100.2010.01072.x
Abstract
The variation in sizes of chondrules from one chondrite to the next is thought to be due to some sorting process in the early solar nebula. Hypotheses for the sorting process include chondrule sorting by mass and sorting by some aerodynamic mechanism; one such aerodynamic mechanism is the process of turbulent concentration (TC). We present the results of a series of statistical tests of chondrule data from several different chondrites. The data do not clearly distinguish between various options for the sorting parameter, but we find that the data are inconsistent with being drawn from lognormal or (three-parameter) Weibull distributions in chondrule radius. We also find that all but one of the chondrule data sets tested are consistent with being drawn from the TC distribution.
21 pages, 3 figures, 4 tables. Published in Meteoritics & Planetary Science
References in corpus (2)
Cited by in corpus (9)
- Chondrule size and related physical properties: a compilation and evaluation of current data across all meteorite groups
- Abundance, Major Element Composition and Size of Components and Matrix in CV, CO and Acfer 094 Chondrites
- The quasi-universality of chondrule size as a constraint for chondrule formation models
- Polydisperse Streaming Instability III. Dust evolution encourages fast instability
- Harvesting the decay energy of Al to drive lightning discharge in protoplanetary discs
- Chondrule destruction in nebular shocks
- The effect of multiple particle sizes on cooling rates of chondrules produced in large-scale shocks in the solar nebula
- Building Earth with pebbles made of chondritic components
- The motion of chondrules and other particles in a protoplanetary disc with temperature fluctuations