In this presentation, we focus on the simulation of the melting phenomenon during laser drilling. The governing equation is the transient three-dimensional heat conduction equation. However, the melting interface is moving and needs to be determined as part of the solution. In this paper, boundary element method formulation for the transient three-dimensional heat conduction equation with moving boundary will be presented. The moving boundary, solid-liquid interface, appears in the surface integral. Consequently, it is easy to track. To increase the efficiency of the computation, we combine the boundary element method formulation with finite difference method. Stefan’s boundary condition is applied along the melting interface. The coupled BEM-FDM is an effective way to simulate the melting process.
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ICALEO 2000: Proceedings of the Laser Applications in the Automotive Industry Conference
October 2–5, 2000
Dearborn, Michigan, USA
ISBN:
978-0-912035-62-8
PROCEEDINGS PAPER
Coupled boundary element method and finite difference method for laser drilling Available to Purchase
Sirilath De Silva;
Sirilath De Silva
The University of Arizona, Aerospace and Mechanical Engineering Department
, Tucson, AZ 85718, USA
. Email: [email protected]
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Cho Lik Chan
Cho Lik Chan
The University of Arizona, Aerospace and Mechanical Engineering Department
, Tucson, AZ 85718, USA
. Email: [email protected]
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Published Online:
October 01 2000
Citation
Sirilath De Silva, Cho Lik Chan; October 2–5, 2000. "Coupled boundary element method and finite difference method for laser drilling." Proceedings of the ICALEO 2000: Proceedings of the Laser Applications in the Automotive Industry Conference. ICALEO 2000: Proceedings of the Laser Materials Processing Conference. Dearborn, Michigan, USA. (pp. pp. E193-E201). ASME. https://doi.org/10.2351/1.5059494
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