Tensorflux · Aerospace R&D
Advanced aerodynamics, engineered into rugged hardware.
We transform complex computational fluid dynamics into actionable, rugged hardware — bridging academic aerodynamic research and rapid physical prototyping for the next generation of unmanned aircraft.
- Re Number
- 30,000
- Drag Cut
- 67.5%
- Origin
- Univ. Lab

Airframe // KFm-1 SteppedIn Development
What We Build
One team, from simulation to flight test.

Velocity Magnitude · URANS
Academic Roots
Backed by peer-reviewed flow-control research.
Our engineering team's own computational study on hybrid passive and active flow control — trailing-edge flaps combined with synthetic-jet actuation — informs every airframe decision we make.
67.5%
peak drag reduction
72.3%
base pressure recovery
Re 30k
validated regime
Have a hardware problem that starts with fluid dynamics?
Whether it's an airframe pre-order, custom avionics, or a CFD engagement — tell us what you're building and we'll tell you what the flow is doing.

