Hydrodynamic Cavitation Reactor Design
We design customized hydrodynamic cavitation reactors based on process requirements, fluid properties, flow regime, pressure conditions, temperature, residence time and target cavitation intensity.
Executive Description
We design customized hydrodynamic cavitation reactors based on process requirements, fluid properties, flow regime, pressure conditions, temperature, residence time and target cavitation intensity.
Reactor configurations may include stationary cavitation devices, Venturi-based systems, orifice-based reactors, vortex systems and advanced rotational hydrodynamic cavitation reactors.
Each reactor is engineered for the specific application rather than relying on a one-size-fits-all configuration.
Scope of Services
- Process requirement and fluid-property review
- Flow regime, pressure and temperature analysis
- Residence time and target cavitation intensity definition
- Reactor configuration selection: stationary, Venturi, orifice, vortex or rotational HCR
- Mechanical design and materials selection
Engineering Methodology
Reactor geometry, flow rate, rotational speed, operating temperature and feed concentration are the parameters that determine cavitation performance, and our design process treats them as a coupled set rather than tuning one in isolation.
Concepts are screened computationally before a configuration is committed to detailed mechanical design, keeping the reactor matched to the fluid and duty rather than adapted from a generic catalogue unit.
Deliverables
- Reactor concept and configuration selection
- Process and mechanical design package
- Materials of construction specification
- Basis of design report for pilot or full-scale fabrication
Applications
Industries Served
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