4.2 Article

A Sharp-Interface Level-Set Method for Simulation of a Piezoelectric Inkjet Process

Journal

NUMERICAL HEAT TRANSFER PART B-FUNDAMENTALS
Volume 55, Issue 4, Pages 295-312

Publisher

TAYLOR & FRANCIS INC
DOI: 10.1080/10407790902724552

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Funding

  1. Sogang University

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A numerical method is presented for computing the droplet motion in a piezoelectric inkjet process. The level-set method for tracking the liquid-gas interface is extended to treat the immersed (or irregular-shaped) solid surface of an ink nozzle. The no-slip condition at the fluid-solid interface as well as the matching conditions at the liquid-gas interface are accurately imposed by incorporating the ghost fluid approach based on a sharp-interface representation. The dynamic contact-angle condition at the immersed solid surface is implemented by employing a fast marching approach. The numerical method is applied to analyze the effects of nozzle shape, dynamic contact angle, and pressure pulse on the inkjet process.

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