Reference change · event page
Reference changes · DOI
WITHDRAWN: Erratum to “The motion of a single heavy sphere in ambient fluid: a benchmark for interface-resolved particulate flow simulations with significant relative velocities” [Int. J. Multiphase Flow 59 (2014) 221-243]
Published notice on a work cited in the Pith corpus. Exact quotes below. No model judges whether any citation was load-bearing.
This page records that a citing paper's bibliography includes a work with a published notice. It is not a judgment on the citing paper.
Retraction
Crossref
2 open · 2 total · 0 disputed
- Event date
- 2014-03-04
01Notices on this DOI
-
Retraction
Crossref · 2014-03-04
-
Retraction
Retraction Watch
02One-hop citing occurrences
Retraction
Open
Particle-resolved simulations of settling particles: A methodology for long time-integration intervals
ref [9] ·
2604.21064
· notice #59
· dispute
Raw extraction · bibliography line
The motion of a single heavy sphere in ambient fluid: a benchmark for interface--resolved particulate flow simulations with significant relative velocities , author=. 2014. doi:https://doi.org/10.1016/j.ijmultiphaseflow.2013.10.010
Parser render (TeX stripped for reading; raw above is the evidence)
The motion of a single heavy sphere in ambient fluid: a benchmark for interface--resolved particulate flow simulations with significant relative velocities, author=. 2014. doi:https://doi.org/10.1016/j.ijmultiphaseflow.2013.10.010
Retraction
Open
Particle-resolved simulations of settling particles: A methodology for long time-integration intervals
ref [9] ·
2604.21064
· notice #32
· dispute
Raw extraction · bibliography line
The motion of a single heavy sphere in ambient fluid: a benchmark for interface--resolved particulate flow simulations with significant relative velocities , author=. 2014. doi:https://doi.org/10.1016/j.ijmultiphaseflow.2013.10.010
Parser render (TeX stripped for reading; raw above is the evidence)
The motion of a single heavy sphere in ambient fluid: a benchmark for interface--resolved particulate flow simulations with significant relative velocities, author=. 2014. doi:https://doi.org/10.1016/j.ijmultiphaseflow.2013.10.010