Molinaroli College of Engineering and Computing
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- Sirivatch Shimpalee
Faculty and Staff
Sirivatch Shimpalee
Title: | Research Professor |
Department: | Chemical Engineering Molinaroli College of Engineering and Computing |
Email: | shimpale@cec.sc.edu |
Phone: | 803-576-6140 |
Fax: | 803-777-8265 |
Office: |
Horizon 1 |
Resources: | Hydrogen and Fuel Cell Center Dr. Shimpalee's CV |

Education
Ph. D., University of South Carolina, Columbia, 2001
M. S., Bradley University, 1998
B. S., Chiang Mai University, Thailand, 1992
Research
Dr. Shimpalee's current research is in the area of renewable energy including fuel cells, energy storage, high temperature thermal system, and bioenergy. His expertise is to use multi-scale and multi-dimensional modeling combine with electrochemistry to understand the physics inside their complex systems particularly in the transport phenomena.
Recent Publications
- T. R. Garrick, B. J. Koch, M. A. Fernandez, E. Efimoff, H. Teel, M. D. Jones, M. Tu, S. Shimpalee, “Modeling Reversible Volume Change in Automotive Battery Cells with Porous Silicon Oxide-Graphite Composite Anodes,” J. of Electrochemical Society, 171. 103509, 2024.
- H. Teel, T. R. Garrick, S. Srinivasan, F-k. Wang, Y-b. Zeng, S. Shimpalee, “Addressing Strain and Porosity Changes of Battery Electrodes Due to Reversible Expansion through DEM Simulations,” J of Electrochemical Society, 171, 083507, 2024.
- H. Teel, T. R. Garrick, B. J. Koch, M. A. Fernandez, S. Srinivasan, F-k. Wang, Y-b. Zeng, S. Shimpalee, “Utilization of DEM Simulations to Quantify Cell Level Thickness and Volume Changes in Large Format Pouch Cells,” J of Electrochemical Society, 171, 093503, 2024.
- H. Teel, T. R. Garrick, M. A. Sepe, J. S. Lopata, S. Srinivasan, F-k. Wang, Y-b. Zeng, S. Shimpalee, “Quantifying the Impact of Microstructure Variation on Charging Capability in Lithium-Ion Batteries,” J of Electrochemical Society, 171, 083504, 2024.
- M. Sepe, G-H. Jung, G-S. Doo, C-S. Lee, H-S. Cho, N. Tippayawong, and S. Shimpalee, “Multiscale Modeling of Oxygen Evolution Through Generated Bilayer Porous Transport Layers for PEMWE Performance Improvement,” J. of Electrochemical Society. 171 (5), 054501, 2024.
- M. Sepe, J. Lopata, S. Madkour, B. Mayerhoefer, A. Ciesielski, G. Silianovska-Petreska, N. Nestle, S. Shimpalee, “Multiscale Three-Dimensional Modeling of Two-Phase Transport Inside Porous Transport Layers,” International Journal of Hydrogen Energy, 59, 1143–1155, 2024.