Electrohydraulic and shear cavitation radial counterflow liquid processor
Axially fed fluid is sheared during long residence time in a radial workspace between counter-rotating coaxial disk-shaped centrifugal impellers. Gases evolve in the fractal turbulence of a shear layer, which is forced between laminar boundary layers, and an axial suction pump axially extracts evolved noncondensables and volatiles through cores of radial vortices in the shear layer. Cavitation due to shear between the impellers kills pathogens by shock waves, microjets, OH radicals, and nearby UV light pulses. Oppositely charged electrodes bounding the workspace cause electroporesis and electrohydraulic cavitation. The electrodes are counter-rotating ridged armatures of disk dynamos, forming a dynamic capacitor having audio frequency pulsed electric fields. Electrode erosion by arcing is prevented by shear between the electrodes.
1. A method of continuous electromechanical crystallizing of a solute from a solution, comprising the simultaneous steps of
introducing solution through an axial feed port into a radial workspace between counter-rotating centrifugal impellers,
sucking evolved gases out of the workspace through an axial exhaust port,
causing opposite charges on opposing electrodes of the impellers across the workspace, and
expelling solvent and crystals from the periphery of the workspace.
2. The method of claim 1 , wherein the flow out of the periphery is atomized.
3. The method of claim 1 , plus the additional step of filtering the flow out of the periphery to recover crystals.