ENGINEERING PRINCIPLES

Cavitation-Free Fluid Dynamics

Our systems integrate nanobubble technology with jet agitation to eliminate mechanical wear-and-tear. We provide transparent fluid velocity profiles and mass transfer coefficients.

0

moving parts

100%

system uptime

200x

mass transfer

High-resolution cross-section render of a precision-machined jet nozzle, showing smooth fluid flow paths and no cavitation bubbles, stark studio lighting, metallic steel and safety blue accents.
High-resolution cross-section render of a precision-machined jet nozzle, showing smooth fluid flow paths and no cavitation bubbles, stark studio lighting, metallic steel and safety blue accents.
Laser-assisted fluid flow visualization (PIV) diagram, showing velocity profiles and boundary layer shear at a gas-liquid interface, safety blue accents, high contrast.
Laser-assisted fluid flow visualization (PIV) diagram, showing velocity profiles and boundary layer shear at a gas-liquid interface, safety blue accents, high contrast.
Macro close-up of a gas-liquid interface within a stainless steel manifold, showing dissolved nanobubbles, crisp directional studio lighting, metallic steel and safety blue tones.
Macro close-up of a gas-liquid interface within a stainless steel manifold, showing dissolved nanobubbles, crisp directional studio lighting, metallic steel and safety blue tones.
CORE TECHNOLOGY

Physics, Not Promises

Cavitation-Free Design

Our patented design prevents nozzle erosion and maintains continuous system pressure. This ensures consistent performance and extended operational life in corrosive environments.

Boundary Layer Shear

We leverage controlled boundary layer shear to alter the physical chemistry at the gas-liquid interface. This accelerates reactions and enhances dissolution without high energy input.

Gas-Liquid Interface

Our nanobubble generators optimize the gas-liquid interface, keeping gas dissolved for weeks. This is critical for applications requiring sustained chemical reactions or aeration.

PERFORMANCE DATA

Verified System Metrics

10-500 GPM

Flow Rate Capacity

95%+

Gas Dissolution

2000 Pa

Max Shear Stress

TRANSPARENT ENGINEERING

The overall mass transfer coefficient (KLa) is directly proportional to the specific interfacial area and the mass transfer coefficient across the boundary layer.

Fluid Dynamics Principle

Custom Engineering Review

Submit your system parameters for a detailed analysis of how our technology can optimize your fluid processing.