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Three-dimensional morphologies of inclined equiaxed dendrites growing under forced convection by phase-field-lattice Boltzmann method

  • Shinji Sakane
  • , Tomohiro Takaki
  • , Munekazu Ohno
  • , Yasushi Shibuta
  • , Takashi Shimokawabe
  • , Takayuki Aoki
  • Kyoto Institute of Technology
  • Hokkaido University
  • University of Tokyo
  • Tokyo Institute of Technology

Research output: Contribution to journalArticlepeer-review

46 Scopus citations

Abstract

Three-dimensional growth morphologies of equiaxed dendrites growing under forced convection, with their preferred growth direction inclined from the flow direction, were investigated by performing large-scale phase-field lattice Boltzmann simulations on a graphical-processing-unit supercomputer. The tip velocities of the dendrite arms with their preferred growth directions inclined toward the upstream and downstream directions increased and decreased, respectively, as a result of forced convection. In addition, the tip velocities decreased monotonically as the angle between the preferred growth direction and the upstream direction increased. Here, the degree of acceleration of the upstream tips was larger than the degree of deceleration of the downstream tips. The angles between the actual tip growth directions and the preferred growth direction of the dendrite arms exhibited a characteristic change with two local maxima and two local minima.

Original languageEnglish
Pages (from-to)147-155
Number of pages9
JournalJournal of Crystal Growth
Volume483
DOIs
StatePublished - 1 Feb 2018
Externally publishedYes

Keywords

  • A1. Computer simulation
  • A1. Crystal morphology
  • A1. Dendrites
  • A1. Fluid flows
  • A1. Solidification

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