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February 18, 1970Journal of Fluid Mechanics261 citations

Experiments on liquid jet instability

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EGEdmund Frederick GoeddeMYM. C. Yuen

Key Points

  • To examine the capillary instability, disturbance growth rates, and droplet disintegration dynamics of vertical liquid jets across different viscosities subjected to acoustic disturbances.
  • Imposed controlled audio-frequency disturbances of varying wavelengths onto vertical liquid jets with different viscosities.
  • Used real-time sequence photography to directly track and measure disturbance growth rates, neck-swell differences, and drop-ligament transitions.
  • Disturbance growth is generally dominated by non-linear effects consistent with Yuen's analysis, while the growth rate of the difference between neck and swell matches Rayleigh-Chandrasekhar linear theory.
  • Non-linear effects cause jets to disintegrate into primary drops separated by ligaments, with ligament sizes decreasing as wave-numbers increase.
  • Ligaments subsequently roll up into satellite droplets that undergo drop oscillation and eventual coalescence with main drops.

Abstract

The capillary instability of vertical liquid jets of different viscosities have been examined by imposing audio-frequency disturbances. Real time sequences of photographs allow a direct measurement of growth rates of disturbances of various wavelengths. Results show that in general non-linear effects dominate the growth processes. This is in agreement with Yuen's analysis. The growth rate of the difference between the neck and the swell, however, agrees well with the linearized analysis of Rayleigh and Chandrasekhar. The non-linear effect causes a liquid jet to disintegrate into drops with ligaments in between. The sizes of the ligaments decrease with increasing wave-number. The subsequent roll up of the ligament into droplet, the eventual coalescing of the droplet with the main drop and drop oscillation have also been studied.

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Cite This Study

Goedde et al. (1970) studied this question.

synapsesocial.com/papers/69d8dab933ca018b39ae4355https://doi.org/10.1017/s0022112070000289
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