See how perforated coalescent media and a removable magnetic insert improve gas and particle re
See how a tangential water inlet and flat top surface remove dip tubes to accelerate vortex for
See how spiral blades and a central cylinder create uniform centrifugal forces and linear vorte
See how an inflow pipe extension with axial discharge holes disperses two-phase refrigerant flo
See how a spirally wound heat exchange tube with protrusions increases heat exchange area and i
See how a three-port gas-liquid separator uses adaptive flow control to handle cooling, heating
See how a centrifugal separator with tangential inlet and upper vent removes flammable refriger
See how a movable branch flow control member dynamically adjusts flow diversion to remove dirt
See how sandblasted nucleation sites enable catastrophic CO₂ release from carbonated beverages,
See how a slidable casing and draw pipe extract superheated steam directly from magma reservoir
See how merging the aftercooler and liquid separator into one assembly prevents conduit freezin
See how film boiling on a heating element generates ultrafine bubbles with high gas-liquid inte
Helically wound brush media slows hydronic flow so gases rise and solids settle, improving separation while limiting pressure drop.
See how a bypass flow path and separating element enable efficient gas bubble and particle remo
See how a parallel bypass passage uses pressure differential to draw gas bubbles away from the
See how contact-based purification with steam and nitrogen removes aniline impurities below 100
See how a horizontal swirl-flow separator uses centrifugal force and liquid drop nozzles to rem
See how an indirect heated separator uses a heat transfer fluid and integrated coil assembly to
See how circular channels with annular flow and gravitational drainage reduce liquid carryover
See how a dual-path separator uses bypass plates and segmented flow to improve gas and particle
Recirculating condensate through the flue gas condenser strips CO2 vapor before discharge, improving safety and impurity treatment.
See how curved plates distribute flow evenly to remove gas micro-bubbles and dirt particles, re
See how a bolt-on static separator upstream of a rotary separator coarsely removes liquids, red
See how a degassing chamber with partition wall filters large bubbles from pressurized espresso
See how a serpentine channel and nested settling chamber remove fine particles and moisture fro
See how a concave electrode with 60°-120° flow direction change promotes turbulence to reduce c
See how a nested cooling coil and submerged carbonator reduce machine size while maintaining co
See how a sliding impeller with segmented separation and discharge zones enables continuous gas
See how deflecting flaps create localized turbulence in a tubular separator to remove solid and
See how an integrated rotary valve isolates inlet and outlet openings for cleaning without exte
See how curved plates distribute flow into quiet zones where velocity drops, allowing dirt to s
See how segmented radial channels enable compact liquid-vapor separation with low pressure drop
See how multiple intermediate conduits with segmented outlets and inlets maintain uniform phase
Physically isolated intake and exhaust air paths boost volatile contaminant transfer from stored water while preventing cross-mixing.
Quiet zones and flow obstructions separate bubbles and dirt while balancing primary and secondary circuit flow with less leak flow.
Combines flow control, energy calculation, and remote monitoring in one HVAC valve actuator to track usage and prevent coil freezing.
A buoyancy-driven float keeps a battery pack drain open for small water discharge, then seals the hole against external moisture ingress.
A curved inlet tube and holed partition use centrifugal force and gravity to improve gas-liquid separation while keeping pressure drop low.
Stacked degassing disks merge micro gas pockets into buoyant air bubbles, helping hydronic systems cut corrosion, noise, and pump instability.
Dual lean and ultra-lean physical solvents remove CO2 and H2S from high-pressure gas while cutting energy use and hydrocarbon losses.
Multiple liquid outlets and float valves split refrigerant flow, cutting valve cost while reducing backflow and supporting partial-load operation.
Dual CO2 strippers and heat recovery cut reagent regeneration energy in fossil-fuel power plants while preserving capture efficiency and power output.
Series screens in a pressurized spout turn mixed gas-liquid flow into uniform microfoam for cold or non-homogenous beverages.
A shared motor drives a high-speed fan and a slower liquid-gas separator to cut waste-unit mass and prevent urine frothing in microgravity.
Recirculating compression condensate through the flue gas condenser releases CO2 vapor, preventing sewer accumulation and enabling separate condensate treatment.
A cast-embedded conduit stores and delivers heat to compressed fluid while improving pressure containment and lowering TSU manufacturing cost.
A fin-type condensate cooler with horizontal gas flow cuts pressure loss and stabilizes reference humidity from -60°C to 90°C.
A vertical air separator pipe and automatic venting remove trapped air in water tubes, preventing pressure loss and lining peeling.
A blower and water-steam separation media remove hot vapor before door opening, improving operator comfort and avoiding hood ventilation losses.
A modular humidifier adapts to different chambers, controls heating to limit condensate, and adds UV sterilization for cleaner respiratory therapy.
Successive impingement chambers and optical oil-level sensing let a compact helium compressor separator remove over 99% of oil.
A disposable liner inside a rigid vessel removes bubbles, maintains sterility, and avoids cleaning while handling high-pressure bioprocess flow.
Uses desiccant-air and desiccant-desiccant heat exchange to regenerate liquid desiccant with low-grade waste heat while avoiding crystallization.
An internal manifold separator diverts liquid refrigerant to evaporator tubes while bypassing flash gas to reduce maldistribution, pressure drop, and added cost.
Sequential pre-mixing and dispersing improve lithium-ion battery slurry uniformity, raise solid content, and cut production time and solvent use.
A gas separator and temperature-based pump control remove entrained gases and vent byproducts from battery coolant circuits.
An electromagnetic swirl pipe spins gas flow to separate submicron droplets with lower pressure drop and high liquid-load tolerance.
A diagonal downward flow path slows the two-phase stream and drives wall collision below the outlet to improve water separation from fuel exhaust gas.
A split-flow bypass lets part of the coolant skip the degassing space, improving venting while limiting pressure drop in vehicle cooling.
A bypass flow path lets part of the coolant skip the degassing space, improving gas removal while preserving circulation pressure and saving space.
An integrated degassing channel in the vehicle expansion tank removes coolant bubbles without a separate separator, cutting piping, weight, and cost.
Controlling sulfuric acid height in an activated carbon filter bed prevents oxygen trapping, stabilizes peroxide decomposition, and extends carbon life.
A swirl pot merged with a coolant manifold removes air bubbles while simplifying piping, improving heat exchange and serviceability.
An annular flow path around a spaced vortex chamber extends coolant dwell time and improves degassing at higher EV coolant flow rates.
Fresh soil is mixed into a slurry for parallel nutrient testing, avoiding drying and grinding while speeding agricultural sample analysis.
Partitioned oil tank venting with calibrated holes and elbow ducts keeps the strainer fed and vents oil-free during aircraft acceleration.
A piggable drain channel extracts liquid from subsea multiphase flow to cut holdup, pressure loss, and slugging without stopping pigging.
Undried soil is mixed and filtered into slurry for semi-concurrent chemical analysis, cutting prep steps while preserving measurement accuracy.
Calibrated partitions, bent vent pipes, and static degassing keep turbine engine oil supplied and vents clear during lateral acceleration.
Undried soil is mixed with water, filtered, and analyzed concurrently to avoid drying and grinding while speeding nutrient testing.
Fresh soil is mixed into a filtered slurry for concurrent nutrient analysis, avoiding drying and grinding while cutting sample turnaround time.
Liquid is extracted from multiphase subsea flow through a piggable drain layout that cuts holdup and pressure loss over long transport distances.
A gear rotor with liquid ports and an impeller passage network improves liquid-gas separation in rotating powerplant fluid systems.
Raw soil is mixed with water into a slurry for automated filtration and semi-concurrent chemical analysis without drying or grinding.
Centrifugal separation in a coupled impeller and gear rotor improves deaeration through liquid ports while easing engine torque extraction.
Fresh soil is turned into slurry for direct multi-analyte testing, avoiding drying and grinding while speeding concurrent sample analysis.
Undried soil is mixed with water, filtered, and analyzed in parallel to avoid drying and grinding delays in agricultural testing.
Branched alcohol defoamers suppress metalworking fluid foam while preserving lubricity, transparency, stability, and biodegradability.
Radial and circumferential oil diffusion increases tank residence time so entrained air can escape before recirculation causes cavitation.
Integrated micro-porous filtration and centrifugation process soil samples as collected, cutting manual filter cleaning and contamination.
Raw soil is turned into a filtered slurry for parallel nutrient analysis, avoiding drying and grinding while speeding sample throughput.
Undried soil is mixed with water and filtered into slurry, eliminating drying and grinding while enabling concurrent nutrient analysis.
Raw soil is mixed into a filtered slurry instead of dried and ground, enabling faster concurrent analysis of nutrients and other chemical properties.
Raw soil is turned into a filtered slurry for concurrent nutrient analysis, avoiding drying and grinding delays in agricultural sample testing.
Wet soil samples are turned into filtered slurry without drying or grinding, enabling faster concurrent nutrient and chemical analysis.
As-collected soil is mixed with water, filtered, and centrifuged to avoid drying and grinding while speeding multi-analyte analysis.
Raw soil is turned into a filtered slurry for parallel nutrient analysis, avoiding drying and grinding while speeding sample throughput.
Raw soil is turned into a filtered slurry for concurrent chemical analysis, avoiding drying and grinding while speeding nutrient testing.
A vent valve in the scavenge return passage speeds oil tank depressurization at shutdown while preserving positive pressure in flight.
Undried soil is turned into a water slurry, filtered, and centrifuged to eliminate drying and grinding while speeding parallel nutrient analysis.
Partitioned annular tank channels oil through cooling and degassing zones to cut tank volume, improve heat dissipation, and prevent air bubble ingestion.
A mechanically attached seal land with a hard wear surface lets a lightweight impeller rotor maintain sealing and reduce fluid leakage.
Tangential swirl flow and dual gas discharge ports remove bubbles from automotive oil circuits to improve cooling, noise, and hydraulic response.
A variable shroud gap with protrusions and grooves cuts impeller leakage and shear while accommodating thermal expansion in turbine engines.
A lightweight impeller rotor uses a mechanically attached harder seal land to resist lip-seal wear and reduce fluid leakage.