Characterization of Pulsating Submerged Jet—A Particle Image Velocimetry Study

Yadav, Harekrishna ; Srivastava, Atul ; Agrawal, Amit (2015) Characterization of Pulsating Submerged Jet—A Particle Image Velocimetry Study Journal of Thermal Science and Engineering Applications, 8 (1). ISSN 1948-5085

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Official URL: http://doi.org/10.1115/1.4030813

Related URL: http://dx.doi.org/10.1115/1.4030813

Abstract

An experimental investigation has been performed to determine the flow characteristics of an axisymmetric submerged water jet with superimposed periodically oscillating flow. The objective of the study is to quantify in detail the near field of a pulsating jet using the particle image velocimetry (PIV) technique. The amplitude and frequency of oscillations are varied separately and the effect of each parameter is determined for a range of Reynolds numbers (ReD = 1602, 2318, and 3600). The experimental results indicate that for a given Reynolds number and amplitude, with an increase in the frequency of pulsation, the vortex formation shifts toward the nozzle exit. The number of vortices also increases with an increase in the jet pulsation frequency. Broadening of the jet and shortening of the potential core length are also observed. This indicates that mixing with the surrounding fluid is higher with pulsating jet even at relatively low Reynolds numbers. It is observed that frequency up to a critical frequency helps increase entrainment of the surrounding fluid. An upper critical frequency beyond which pulsation does not affect the entrainment is also determined. These results should eventually lead to a better understanding of the physical phenomena responsible for enhanced heat transfer rates in the presence of pulsating jets.

Item Type:Article
Source:Copyright of this article belongs to The American Society of Mechanical Engineers.
Keywords:Heat and Mass Transfer; Heat Transfer Enhancement; Natural Convection; Mixed Convection
ID Code:114973
Deposited On:17 Mar 2021 05:41
Last Modified:17 Mar 2021 05:41

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