
معرفی
Dr. Min Y. Pack is an Assistant Professor in the Department of Mechanical Engineering at Baylor University's College of Engineering. He leads the Interfacial Fluids Lab (IFLab), focusing on experimental investigations of complex fluid phenomena with applications in advanced manufacturing, thermal management, and bioinspired systems.
Education:
- Ph.D. in Mechanical Engineering, Drexel University (2017)
- M.S. in Sustainable Engineering, Villanova University (2014)
- B.S. in Engineering Science, Pennsylvania State University (2012)
Dr. Pack's research lies at the intersection of interfacial science, multiphase flows, and fluid dynamics. His work explores drop impact, oscillation, evaporation, condensation, and rheology of complex fluids, often inspired by natural systems. Using high-speed imaging, microfluidics, and advanced rheometry, his team investigates phenomena such as air entrainment, microbubble dynamics, and colloidal self-assembly. His teaching includes core courses like Fluid Mechanics, Interfacial Fluid Mechanics, and Introduction to Microfluidics.
Analysis of his recent publications reveals a strong focus on experimental fluid mechanics, particularly in drop dynamics, interfacial instabilities, and microscale transport. His work integrates bioinspiration, advanced diagnostics, and precision manufacturing, with growing emphasis on sustainability and industrial applications.
Scientific Awards:
- No specific awards mentioned in the provided text.
Dr. Pack actively mentors graduate and undergraduate researchers. His lab has hosted numerous students, many of whom have pursued advanced degrees or industry positions in aerospace, energy, and fluid systems. He has supervised projects involving inkjet printing, microfluidic mixing, water purification, and thermal management. While specific grants are not listed, his well-equipped lab suggests active external funding. The Interfacial Fluids Lab maintains a robust experimental setup including high-speed cameras, rheometers, microscopes, and custom drop impact systems, supporting a dynamic research environment focused on fundamental and applied interfacial phenomena.




