Alina Alexeenko
Mathematics · Purdue University West Lafayette
Publications
299
Citations
3,463
Est. group size
~9
Recurring co-author estimate
Active years
27
Publishing since 2000
Alina Alexeenko's research applies engineering fluid dynamics and heat/mass transfer modeling to industrial and aerospace problems, with a strong recent focus on pharmaceutical freeze-drying (lyophilization) processes, including ice nucleation control, microwave and RF heating, and vapor flow modeling. Earlier and ongoing work also spans rarefied gas dynamics, plasma modeling, and small satellite (CubeSat) propulsion and sensor systems. This is applied computational and experimental engineering research rather than pure mathematics, drawing on numerical simulation methods like DSMC and particle-in-cell modeling.
Publication output has fluctuated over the past decade, peaking around 2017-2019 and 2023-2024, with a somewhat lower average pace (about 8 papers/year) in the most recent five years.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Critical Needs and Opportunities for Advanced Manufacturing of Lyophilized Injectables
Pharmaceutical Research · 2025
- Fluid dynamics of rapid-depressurization controlled ice nucleation in pharmaceutical lyophilization
Physics of Fluids · 2025
- Thermal Modeling of FEMTA Micropropulsion System for CubeSat Attitude Control
Digital Commons - USU (Utah State University) · 2025
- Optimizing Statistical Field Uniformity for RF Heating in Lyophilization: Modeling and Experimental Validation
IEEE Transactions on Instrumentation and Measurement · 2024
- Rarefied porous flow in lyophilization: Review and open questions
AIP conference proceedings · 2024
- Tunable Quasi Random-Field Microwave-Assisted Freeze Drying: A Novel Method for Optimizing Pharmaceutical Lyophilization
2024
- Improving Statistical Field Uniformity for RF Heating in Freeze-Drying: Impact of Scattering Surface
2024
- Vertically integrated project based method applied to small satellite technology development
Acta Astronautica · 2023
- Lyophilization Process Understanding and Scaleup Using Ab Initio Vial Heat Transfer Modeling
AAPS advances in the pharmaceutical sciences series · 2023
- Overview of Heat and Mass Transfer Modeling in Lyophilization to Create Design Spaces and Improve Process Analytical Technology (PAT) Capability
AAPS advances in the pharmaceutical sciences series · 2023
- SASSI2, a CubeSat Sensor Platform for Atmospheric Entry Aerothermodynamics
SPIE eBooks · 2023
- PIC/MCC Modeling and Validation of Split-Ring Resonator Microwave Microplasma Formation
2022 IEEE International Conference on Plasma Science (ICOPS) · 2022
- In-Process Vapor Composition Monitoring in Application to Lyophilization of Ammonium Salt Formulations
Journal of Pharmaceutical Sciences · 2022
- Equipment Capability Measurement of Laboratory Freeze-Dryers: a Comparison of Two Methods
AAPS PharmSciTech · 2021
- Rapid Depressurization Based Controlled Ice Nucleation in Pharmaceutical Freeze-drying: The Roles of the Ballast Gas and the Vial
Journal of Pharmaceutical Sciences · 2021
- AIP conference proceedings×16
- AAPS PharmSciTech×13
- Journal of Pharmaceutical Sciences×9
- AAPS advances in the pharmaceutical sciences series×6
- Physics of Fluids×5
- Andrew Strongrich
Mathematics · Purdue University West Lafayette
- V. V. Subramaniam
Engineering · The Ohio State University
- Susan White
Mathematics · The Ohio State University
- Anthony Cofer
Engineering · Purdue University West Lafayette
- Nirajan Adhikari
Engineering · Purdue University West Lafayette
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 20, 2026.
Claim or correct this profile