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Volume 10 Issue 3
Jun.  2003
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Shufeng Ye, Yusheng Xie, Hongzhi Guo, Ye Huang, and Shantong Jin, Shrinkage and trajectory of the flat jet with inclination angle, J. Univ. Sci. Technol. Beijing, 10(2003), No. 3, pp. 21-25.
Cite this article as:
Shufeng Ye, Yusheng Xie, Hongzhi Guo, Ye Huang, and Shantong Jin, Shrinkage and trajectory of the flat jet with inclination angle, J. Univ. Sci. Technol. Beijing, 10(2003), No. 3, pp. 21-25.
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Metallurgy

Shrinkage and trajectory of the flat jet with inclination angle

  • 通讯作者:

    Shufeng Ye    E-mail: yeshufeng_bj@sina.com

  • The performance of the flat jet with an inclination angle was investigated by a water model. A mathematical model for the shrinkage and the trajectory of the flat jet with an inclination angle was derived theoretically and verified by experimental data of the water model. The experimental results indicate that the inclination angle (α) has no influence on the shrinkage of the flat jet, the shrinkage of the flat jet along the width direction decreases with the increasing of the initial velocity at the exit (u0) and the initial thickness of the flat jet (t0). Enough bigger initial exit velocity (u0) and initial thickness can suppress the shrinkage of the flat jet along the width direction and keep the flat jet stabilized. In addition, the trajectory of the flat jet with an inclination angle is parabolic and must be taking into consideration when to determine the striking distance.
  • Metallurgy

    Shrinkage and trajectory of the flat jet with inclination angle

    + Author Affiliations
    • The performance of the flat jet with an inclination angle was investigated by a water model. A mathematical model for the shrinkage and the trajectory of the flat jet with an inclination angle was derived theoretically and verified by experimental data of the water model. The experimental results indicate that the inclination angle (α) has no influence on the shrinkage of the flat jet, the shrinkage of the flat jet along the width direction decreases with the increasing of the initial velocity at the exit (u0) and the initial thickness of the flat jet (t0). Enough bigger initial exit velocity (u0) and initial thickness can suppress the shrinkage of the flat jet along the width direction and keep the flat jet stabilized. In addition, the trajectory of the flat jet with an inclination angle is parabolic and must be taking into consideration when to determine the striking distance.
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