See how spacing the collection chamber at least 0.5 inches from the cyclone casing improves par
See how a switching mechanism redirects airflow between suction and blowing modes to improve ke
A concentric outlet surrounding the inlet pipe creates a larger suction area, reducing flow losses and motor power while separating fine dust.
See how an inclined baffle guide element separates refrigerant gas and liquid, prevents compres
See how a two-stage cyclonic separator uses vertical stacking and parallel secondary cyclones t
See how drilled sweeper headers and curved centrifugal separators reduce turbulence and system
See how a baffle-flange-bottom plate gas guide element replaces complex filter screens to simpl
See how nested cyclone chambers with concurrently openable distal walls enable simultaneous emp
See how a segmented dust cup assembly separates the negative pressure device from the dust coll
See how an impeller-turbine cyclonic separator recaptures rotational energy and reduces seconda
See how inclined inlet flow paths and spiral guide vanes combine tangential and axial cyclone a
See how relocating the power supply from handle bottom to top balances the gravity center, redu
The collection chamber uses a circumferential fin to direct separated debris downward, limiting re-entrainment during cyclonic vacuum cleaning.
See how a nested dust cup assembly integrates into the handle structure to increase dust capaci
See how a removable dedusting device in a dust cup assembly prevents bacterial growth and resid
Upward airflow can leave fine dirt in the stream; this separator reverses flow downward through an apertured shroud for improved filtration.
See how a pistol grip handle angled 85-140 degrees to the cyclonic unit lets the dirt collector
See how a baffle arrangement redirects airflow in a cyclonic vacuum to collect dirt preferentia
See how a variable-height inlet nozzle and removable cyclonic separator improve debris separati
See how angled cyclonic chamber and motor assembly axes improve airflow efficiency and debris s
See how an acute inlet-to-separator angle (30-70°) ensures vertical cyclonic axis orientation d
See how nested second cyclones inside a first cyclone reduce dust collector height while mainta
See how a cooling loop with positive Joule-Thomson refrigerant enables high-pressure chromatogr
See how segmented cyclone chambers with airflow guiding components increase rotational speed to
See how nested first and second cyclones arranged in parallel improve small-particle separation
See how nested frusto-conical and cylindrical chambers with optimized dimensional ratios improv
See how a nested separator plate and segmented top member achieve over 99% particulate removal
See how a hidden release catch accessible only when the bin is extended prevents accidental rem
See how radial dirt outlets and a shared collection plenum enable a compact multi-cyclone array
See how a protruding reticulated cover in a cyclone mesh filter directs long hair and dust to t
See how precise casing diameter (38.1–46.8 mm) and 60° suction tube angle achieve 20% higher oi
See how a radial-inlet elongate filter nested within the cyclonic separator duct eliminates the
See how a portable cutting surface with integrated debris container and vacuum connection separ
See how a curved side wall with non-constant radius of curvature accelerates water flow to crea
See how a flat separator plate with radial passages uses centrifugal force to capture over 99%
See how a helical airflow directing formation in a cyclonic separator improves dust collection
See how radial dirt outlets in parallel cyclones eliminate re-entrainment and extra filters, re
See how a nested two-stage cyclone configuration reduces hand vacuum bulk while maintaining dir
See how a rotatable grill in a cyclone dust collector uses dynamics and self-service principles
See how a rotatable grill driven by suction force prevents dust accumulation on the filter surf
See how a release tool with dual bearing areas enables simultaneous push-fit connector operatio
See how a cyclonic separator with helical passageway and liquid delivery system maintains sucti
Internal inlet and outlet ducts nested within the dirt chamber cut tortuous vacuum paths, reducing size and airflow losses.
An air-guide beside the cyclone dirt-duct cuts vortices and Helmholtz resonance while preserving dirt separation performance.
Vertically in-line ports and internal deflectors create swirl for particle separation while simplifying retrofit heating installation.
A base inlet and integrated internal duct shorten the vacuum airflow path, improving compactness, airwatts, and separation efficiency.
A taller multi-cyclone second stage captures fine particles with lower back pressure, reducing pre-motor filter clogging and maintenance.
Relocating modular hydrocyclones to the subsea wellhead removes sand before platform entry, preserving deck space and reducing payload weight.
Textured hydrocyclone walls induce turbulence to counteract polymer drag reduction, restoring separation efficiency.
Multi-level grinders and sensors separate damaged photovoltaic modules into recyclable particles while protecting the glass substrate.
Helical vortex inducers concentrate solids on conduit walls via centrifugal force, extending equipment service life by reducing erosion.
A modular hydrocyclone uses interchangeable inserts to adjust capacity and cleaning efficiency without replacing the main body.
A centrifugal separator spin post anchors the fluid vortex, reducing turbulence and power requirements at low flow rates.
A cyclone with a porous insert uses capillary pressure to retain liquid, preventing re-entrainment during high-velocity supersaturated gas separation.
Removable cyclone cartridges in a single housing reduce maintenance time and inventory while handling high fluid flow rates.
Segmented cyclones with liquid seals resolve separation accuracy versus air volume trade-offs.
Hydrocyclonic particle separator assembly maintains suction performance while six driven brushed rollers navigate around obstacles.
Ultrasonic energy in a removal liquid separates adhered ultrafine particles from fine metal powder, restoring flowability without significant mass loss.
A three-reactor fluid catalytic cracking unit processes desalinated crude oil directly into high-value petrochemical feedstocks like ethylene and propylene.
Spring damping elements between the inner wall and wear skirt prevent deformation during thermal expansion, reducing abrasive wear on the separator.
A cyclonic reactor vessel design featuring a low residence time plenum with secondary cyclone support.
Centrifugal cylinder captures abrasive solid debris from well production streams, preventing equipment damage during high-pressure flow-back operations.
A combined closing valve unit integrates feed and accept channel closure mechanisms into a single actuator assembly.
Varying sidewall thickness along the conical section improves wear resistance while managing manufacturing costs and maintaining flow geometry.
External sensors monitor the internal air core to detect roping and bypass instability, enabling proactive operational adjustments that prevent machinery wear.
A phase splitter uses a core stabilizer to engage the light phase core within the flow bore.
A dual cyclone separator uses a common tangential inlet to distribute process streams into separate chambers.
Nested centrifuge and cyclone stages separate large and small sand particles in hydraulic fracturing fluids.
Positioning the gas inlet away from the liquid film prevents mist discharge while ensuring secure particle collection efficiency.
Dual gas outlets with distinct diameters stabilize the reversal apex inside the lower pipe, reducing particle entrainment and wall erosion.
Segmented cyclone internals narrow flow channels to boost separation performance, reducing reliance on costly hot gas filters.
A rain gutter channel shape harnesses wind energy to create cyclonic separation that ejects debris via acquired angular momentum.
Microwave attenuation identifies blockages in cement cyclones, eliminating gamma ray health risks and complex shielding requirements.
Flow deflection means create controlled turbulence to transport heavy particles, preventing remixing with the light fraction and minimizing fibre losses.
Apertures in the intake manifold reduce vortex formation and pressure imbalances, improving cleaning efficiency.
Curved inlet passages and tapered guiding mechanisms reduce flow resistance and kinetic energy loss while enhancing particle separation efficiency.
A micrometric separator uses fluid bed turbulence to crush biomass particles through reciprocal collisions.
A hydroclone uses a vortex flow barrier to disrupt rotational velocity between chambers, protecting the internal filter assembly from high-speed particle impact.
Segmented immersion pipe uses resilient S-shaped connections to maintain dimensional stability under thermal stress and mechanical loads.
Two communicating vessels with bucket-shaped internals split gas flow to separate liquid, preventing impurity deposition while reducing system footprint.
Extending the discharge pipe below the liquid level prevents swirl re-introduction of foreign matters into the purified air stream.
Periodic flushing action in a hydrocyclone maintains discharge reliability while minimizing process water consumption.
Integral check valve piston with circumferential seals regulates pressure in supercritical fluid pumps, addressing slow diffusion and control difficulties.
A cyclonic sample probe uses centrifugal force to separate entrained liquids from pressurized gas streams.
Cyclonic separator splits fluid into phases, routing gas to an annulus to revive dead wells without high-energy ESPs.
Control air regulates pressure balance in the lower chamber, preventing infiltrated air from reducing purity while maintaining throughput.
Parallel mini-cyclonic chambers in a vacuum excavation system separate spoils from the medium, preventing paper filter clogging during microtrenching.
An inner partition divides the vessel into regions while a conical base collects solids, preventing re-mixing during high flow rates.
Annular cyclones trap heavy particles using gravity discharge, preventing clogging from high temperatures near the braking zone.
Segmenting complex inserts into simple radial pipes reduces chamber length and manufacturing tolerance issues while maintaining separation effectiveness.
A cyclonic separation chamber mechanically isolates liquid and gas phases using centrifugal force to enable pure gas evacuation.
A compact cyclonic solids separator uses a swirl-generating chamber and frustoconical element to separate solids from fluids.
Segmented annular disc minimizes contact area to reduce thermal stress in high-temperature cyclone separators.
Interchangeable upper outlet orifices and adjustable lower valves enable a compact hydrocyclone to handle high oil content fluids without excessive footprint.
Differential pressure sensing determines solids volume in separator vessels, preventing hydrocarbon carryover and equipment erosion.
Tangential discharge imparts swirl velocity to a solid-gas mixture while a radially offset inlet withdraws recovered gas from the separation vessel.