Paper Information

Journal:   SCIENTIA IRANICA   2014 , Volume 21 , Number 3 (TRANSACTIONS B: MECHANICAL ENGINEERING); Page(s) 578 To 586.
 
Paper: 

VISCOELASTIC POTENTIAL FLOW ANALYSIS OF THE STABILITY OF A CYLINDRICAL JET

 
 
Author(s):  AWASTHI M.K.*, ASTHANA R., AGRAWAL G.S.
 
* DEPARTMENT OF MATHEMATICS, UNIVERSITY OF PETROLEUM AND ENERGY STUDIES, DEHRADUN, 248007, INDIA
 
Abstract: 

A linear analysis of the temporal instability of a viscoelastic liquid jet with axisymmetric and asymmetric disturbances moving in an innite viscous fluid is investigated. The cause of the instability in the liquid jet is Kelvin-Helmholtz instability, due to the velocity difference and capillary instability, due to surface tension. The dispersion relation for viscoelastic potential flow is cubic in nature. The stability analysis shows that viscoelastic liquid jets are less unstable than inviscid jets and more unstable than viscous liquid jets for both axisymmetric and asymmetric disturbances. Stability analysis has been undertaken in terms of various parameters, such as Weber number, Reynolds number, Deborah number etc.

 
Keyword(s): VISCOELASTIC POTENTIAL FLOW, CYLINDRICAL JET, MAXWELL TYPE FLUID, INTERFACIAL FLOWS, VISCOUS STRESSES
 
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