Behavior of a micron-sized air bubble in operating FDBs using the discrete phase modeling method

  • Jung, Yeonha
  • Jang, Gunhee
  • Jung, Kyungmoon
  • Kang, Chiho
  • Shin, Hyunho
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2

초록

This paper investigates the motion of a micron-sized air bubble in the operating fluid dynamic bearings (FDBs) of a spindle motor in a computer hard disk drive. The flow field of FDBs is calculated by solving the Navier-Stokes equation and the continuity equation. The two-phase flow in the air-oil interface is simultaneously solved by using the finite volume method and the volume of fluid (VOF) method. We then analyze the motion of a micron-sized air bubble by applying the discrete phase modeling (DPM) method to the calculated flow field of FDBs. The motion of a micron-sized air bubble determined using the DPM method is verified by comparison with the trajectory of the micron-sized air bubble determined using the VOF method. The trajectories of a micron-sized air bubble with different initial positions in the FDBs are discussed.

키워드

Finite volume methodFlow fieldsHard disk storageNavier Stokes equationsAir bubblesContinuity equationsDiscrete phase modelFluid dynamic bearingsHard Disk DriveSpindle motorsVOF methodVolume of fluid methodAir
제목
Behavior of a micron-sized air bubble in operating FDBs using the discrete phase modeling method
저자
Jung, YeonhaJang, GunheeJung, KyungmoonKang, ChihoShin, Hyunho
DOI
10.1007/s00542-014-2155-2
발행일
2014-08
유형
Article
저널명
Microsystem Technologies
20
8-9
페이지
1511 ~ 1521