Helical airfoils with perforations and surface perturbations mix fluids inline, cutting batch treatment steps, storage, and mixing time.
Spiral piping, baffled segments, and variable flow control improve pressurized dosing of dry or liquid additives in portable treatment setups.
Turbine-induced swirl improves reductant and exhaust mixing for NOx reduction while avoiding extra mixers, space, and system complexity.
A variable-depth metering groove controls concentrated chemical flow at low draw rates while reducing clogging and keeping dilution consistent.
Coordinated cavitation, magnetic fields, dosing, and polarity-reversing electrolysis let one modular setup treat varied water sources efficiently.
Three optical sensors and closed-loop control adjust blade and pusher motion to dispense different pet food sizes without blockage.
A displaceable seal and one-way activation let prefilled syringes mix securely while preventing leakage, migration, and removal after use.
Compressed air guided along the discharge mouth and closing cap removes buildup more completely, improving powder, grain, and paste discharge.
An adjustable cone-and-sleeve multi-gap valve stabilizes gap height, avoids pressure peaks, and reduces wear and cleaning complexity.
Inner and outer flowpaths use hot exhaust and swirler vanes to limit reductant condensation, improving mixing and reducing caking and ammonia slip.
Controlled flow-path mixing prepares electrolyte reagents at a set concentration, reducing bottle changes, waste, and analyzer downtime.
Dual-marker EV capture and anchoring improve isolation specificity in complex biofluids while eluting vesicles without both markers.
Spiral blades and inner-wall ribs create turbulent swirling flow to generate ultra-fine bubbles and improve uniform gas mixing.
Pumps sub-thermocline water to surface spray for oxygen transfer, seasonal temperature adjustment, and off-grid relocation.
Disposable cartridges and a mixing nozzle enable precise fluid blending and temperature control while reducing contamination from manual handling.
Pre-separating solids before a throttled microbubble generator keeps slurry treatment simple while improving reaction and separation reliability.
Variable baffle hole density re-mixes NH3 and exhaust gas to improve flow uniformity and boost SCR catalyst conversion efficiency.
Real-time fluid analysis and inline additive mixing remove settling tanks, reduce handling steps, and support direct well injection.
Maintaining a fixed liquid level with zoned stirring and circulation reduces temperature swings, uneven neutralization, and precipitate formation.
An impingement surface and electric heater vaporize DEF inside the mixing tube, improving SCR blending at low temperatures with low flow loss.
A helical static mixer extends the coating flow path inside a short cartridge, improving multi-component mixing without increasing sprayer length.
Radial nanogas injection creates a shear-focus zone that strips oil from slurry particulates, cutting residual contamination and energy use.