Lisa S. Lun, Ph.D.

Affiliations: 
Chemical Engineering University of Minnesota, Twin Cities, Minneapolis, MN 
Area:
numerical simulation and high-performance computing to better understand continuum transport and reaction in the processing of advanced materials
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Parents

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Jeffrey J. Derby grad student 2007 UMN
 (Modeling and control of cadmium zinc telluride grown via an electro-dynamic gradient freeze furnace.)
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Publications

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Yeckel A, Lun L, Derby JJ. (2010) Multi-scale crystal growth computations via an approximate block Newton method Journal of Crystal Growth. 312: 1463-1467
Lun L, Yeckel A, Derby JJ. (2010) A Schur complement formulation for solving free-boundary, Stefan problems of phase change Journal of Computational Physics. 229: 7942-7955
Yeckel A, Lun L, Derby JJ. (2009) An approximate block Newton method for coupled iterations of nonlinear solvers: Theory and conjugate heat transfer applications Journal of Computational Physics. 228: 8566-8588
Derby JJ, Gasperino D, Lun L, et al. (2008) Modeling the growth of CZT by the EDG process Proceedings of Spie - the International Society For Optical Engineering. 7079
Derby JJ, Lun L, Yeckel A. (2007) Strategies for the coupling of global and local crystal growth models Journal of Crystal Growth. 303: 114-123
Lun L, Yeckel A, Daoutidis P, et al. (2006) Decreasing lateral segregation in cadmium zinc telluride via ampoule tilting during vertical Bridgman growth Journal of Crystal Growth. 291: 348-357
Lun L, Yeckel A, Reed M, et al. (2006) On the effects of furnace gradients on interface shape during the growth of cadmium zinc telluride in EDG furnaces Journal of Crystal Growth. 290: 35-43
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