Mateus Schuabb
Engineering · The Ohio State University
Publications
17
Citations
61
Est. group size
~2
Recurring co-author estimate
Active years
10
Publishing since 2017
Mateus Schuabb works in the field of fluid dynamics, using computer simulations to study how fluids and gases behave, especially at very high speeds. Recent work focuses on hypersonic flows (air moving many times faster than sound) around objects like cones and blunt-nosed shapes, examining how flow transitions from smooth (laminar) to chaotic (turbulent) patterns. Earlier work examined how heat and fluid movement through porous materials (like sand or soil) can become unstable under certain conditions.
Publication output was low and sporadic from 2017 to 2023 but has grown markedly since 2024, with a notable surge in 2025 and continued output projected into 2026.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Direct Numerical Simulation of Wall Cooling on Hypersonic Boundary-Layer Transition
2026
- Boundary-Layer Transition Over a Smooth Circular Cone at Non-Zero Angle of Attack in a Mach 8 Digital Wind Tunnel
2026
- Direct Numerical Simulation of a Hypersonic Turbulent Boundary Layer over a Blunt Ogive
2026
- A One, Two and Three-Dimensional Structured Steady-State Solver (3D4S) for Numerical Simulations of Compressible Flows With High-Order and Shock-Capturing Capabilities
2025
- Convergence towards High-Speed Steady States Using High-Order Accurate Shock-Capturing Schemes
Fluids · 2024
- Two- and Three-Dimensional Absolute Instabilities in a Porous Medium with Inclined Temperature Gradient and Vertical Throughflow
Transport in Porous Media · 2020
- Identifying linear absolute instabilities from differential eigenvalue problems using sensitivity analysis
Journal of Fluid Mechanics · 2019
- Three-Dimensional instability analysis in a porous medium with inclined temperature gradient and horizontal and vertical throughflow
17th Brazilian Congress of Thermal Sciences and Engineering · 2018
- Convective and absolute instability in a porous medium with inclined temperature gradient, horizontal and vertical throughflow
2017
- Journal of Fluid Mechanics×2
- Transport in Porous Media×1
- Fluids×1
- AIAA AVIATION 2022 Forum×1
- 17th Brazilian Congress of Thermal Sciences and Engineering×1
- Gary L. Nicholson
Engineering · The Ohio State University
- Jonathan Poggie
Engineering · Purdue University West Lafayette
- Zachary B. Riley
Engineering · The Ohio State University
- Jack J. McNamara
Engineering · The Ohio State University
- Zachary D. Lawless
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 19, 2026.
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