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Numerical Heat Transfer, Part B: Fundamentals
An International Journal of Computation and Methodology
Volume 54, 2008 - Issue 2
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Original Articles

A Level-Set Method for Simulation of a Thermal Inkjet Process

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Pages 138-156 | Received 12 Dec 2007, Accepted 25 Apr 2008, Published online: 18 Jun 2008
 

Abstract

A numerical approach is presented for computing a thermal inkjet process, in which bubble growth and collapse acts as a driving mechanism for ink droplet ejection. The liquid–vapor and liquid–air interfaces are tracked by a level-set method which is modified to include the effect of phase change at the liquid–vapor interface and is extended to treat the contact angle condition at an immersed solid surface. The compressibility effect of a bubble is also included in the analysis to account for the high vapor pressure caused by instantaneous bubble nucleation. The whole process of the thermal inkjet, including jet breaking, satellite droplet formation, and ink refill, as well as bubble growth and collapse, is simulated without employing a simplified bubble growth model.

This work was supported by a Special Research Grant of Sogang University.

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