Full Volumetric Plume Modeling
Reconstructs full 3D plume geometry from planar cross-sections taken at multiple distances, revealing complete downstream spatial development.
Tomographic Solver · 3D Plume Volume
Import spray pattern distributions from multiple distances to build an interactive 3D model of spray spatial development.
Developed for research labs, aerospace propulsion teams, and advanced nozzle engineering groups, SprayScan 3DR transforms multi-slice 2D patternator data into continuous 3D voxel density fields. Inspect internal vortex structures, measure spray collapse, evaluate air core symmetry, and benchmark physical spray performance directly against computational fluid dynamics (CFD) grids.
Transform multi-slice optical planar scans into full interactive 3D volumetric models of spray plume formation.
Reconstructs full 3D plume geometry from planar cross-sections taken at multiple distances, revealing complete downstream spatial development.
Tomographic Solver · 3D Plume Volume
Examines internal vortex structure, hollow-cone core voids, and atomization breakup zones to identify fluid skew and swirl disruption.
Swirl Dynamics · Core Integrity
Directly compares measured physical spray plumes against computational fluid dynamics (CFD) simulation grids to calibrate turbulence models.
CFD Correlation · Model Validation
Exports spatial voxel data to standard STL solid meshes, OBJ point clouds, and raw 3D CSV matrices for downstream aerodynamic simulation.
STL / OBJ Export · Point Cloud
Built for spray research laboratories, aerodynamic simulation, and advanced nozzle engineering.
Volumetric 3D Plume Reconstruction & CFD Correlation.
See how planar optical scans captured by the SprayScan mPT are processed through tomographic reconstruction algorithms to reveal internal droplet structures, vortex cores, and density profiles.
Detailed technical bulletin outlining computed tomographic reconstruction algorithms, voxel tolerances, and CAD export guides.
Download PDF (B844) →Review peer-reviewed literature and experimental validations comparing optical 3D reconstruction against physical mechanical patternation.
Explore Technical Library →Consult with our senior research team to evaluate 3D plume modeling, spray breakup dynamics, and CFD correlation for your nozzles.
Schedule R&D Consultation →A Spray Analysis and Research Services specialist will help you explore 3D plume reconstruction capabilities and mPT integration for your engineering team.