See how a gradient porous structure with interconnected pores of varying sizes separates two-ph
See how a 3D gradient porous structure with interconnected pores of varying sizes separates flu
A selectively permeable underground membrane vents trapped gas from pressurized pipelines while blocking water loss and avoiding aboveground valves.
Mechanically coupled gear pump stages balance feed and discharge flow under vacuum, preventing overpressure and cavitation in liquid processing.
Entrained air and vapor disrupt diesel injection; this case shows an air-bleed separator layout that removes gas while maintaining fuel pressure.
Baffles, filters, and support members create multi-path coolant flow that removes air twice and limits re-entrainment in EV cooling systems.
A CT gantry reservoir uses centrifugal force to trap bubbles and particles in a separate chamber, preserving cooling and electrical isolation.
Low-voltage electrostatic repulsion and high-voltage radical oxidation keep organic particles off the membrane while improving degassing.
A reservoir filter combines bypass flow, baffles, and freeboard de-gassing for easy replacement without system flushing.
A urea filter element uses a hydrophilic layer and a hydrophobic layer to separate particles from gas bubbles.
A filter unit uses a flow path projection to direct air bubbles toward a coupling port.
Inclined bottom surface spaces away from filter to prevent bubble entrapment and reduce pressure loss in liquid ejecting systems.
Separate compartments in a single tank store degassed and non-degassed water, reducing device complexity while maintaining pressure propagation reliability.
An electrochemical oxygen removal device reduces dissolved oxygen in drilling fluids using a nanoparticle cathode and ion exchange membrane.
A bearing plate assembly with an adjustable drive jet directs fluid flow to optimize oil drainage in hydraulic systems.
An electrochemical device converts oxygen to water across a permeable membrane to remove dissolved gas from fuel streams.
A gas permeable membrane layer enables controlled gas transmission through a storage vessel cover while providing thermal insulation.
An ejector-driven fuel stabilization unit uses a high-pressure fluid stream to generate vacuum across an oxygen permeable membrane for deoxygenation.
Holding portion maintains precise interval between introduction hole and separation member for stable oil separation.