See how labyrinth chambers and Venturi transitions generate turbulence flows to separate partic
A dual-chamber separator slows flow only in a settling zone, removing non-magnetic and magnetic debris without restricting heating water flow.
Separators installed in hot rolling mill flumes recover mill scale before oil contamination, cutting landfill cost and enabling recycling.
A bent flow path and overflow wall separate supernatant from fine sludge in machine-tool coolant, reducing tank cleaning and filter dependence.
Partitioned coolant reservoirs use settling and overflow across a lower boundary wall to remove fine sludge and reduce tank cleaning load.
Angled plates and baffles create crossflow settling that removes suspended sediment and retains floatables while bypassing high stormwater flows.
V-shaped projections and folded lamella structures redirect effluent through clarifier channels for more uniform speeds and reduced turbulence.
A spiral separator uses a deep inner partition wall to guide fluid flow and separate light liquid from heavy sludge.
A guide wall directs sewage into a sump for initial solids separation, while a movable partition facilitates further separation within six minutes.
Inclined plates create laminar flow in a conical chamber to separate liquid components by density.
Annular diffuser structures decrease flowback velocity to prevent pipe erosion while separating proppant and oil.
A multi-stage separator system integrates a cyclone with a partitioned pressure tank to separate solids, liquids, and gases.
Removable filter assembly enables exterior windshield wiper fluid refilling, maintaining sealed hood status while filtering contaminants.
A layered tube separator uses gravity stratification to separate oil, water, and sediment from produced fluids.
Asymmetric clarifier walls and segmented aeration chambers resolve the trade-off between structural complexity and treatment reliability.
Replacing baffle plates with a cyclone separator extends primer service life by reducing evaporation losses and pigment deposition.
A filtration tray captures particles using composite media and overfill gates to maintain constant pressure drop.
Segmented clarifying chambers reduce excavation depth and floating risk while maintaining effective wastewater treatment.
A waste container uses a debris grate and sediment sump to separate solid pollutants from rainwater.
Density-matched buoys position at fraction interfaces to concentrate desired materials, overcoming centrifuge dilution limits.
Recycles offshore grouting waste water through a settling tank and removable liner to separate sediment, reducing disposal costs and environmental impact.
An internal auger replaces external pumps to reduce device complexity while maintaining reliable media cleaning capability.
Segmented bottle structures and gravity-driven bead mechanisms isolate sediment in dedicated compartments, preventing beverage cloudiness.
Inclined plates redirect liquid flow to separate solid particles, reducing device complexity compared to active filtration systems.