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Nozzle nozzle

Swirl nozzles Nozzles used to distribute primary air into a space by creating a swirl. This arrangement provides good entrainment and mixing of the air. [Pg.1479]

Impeller mach number at eye and at periphery. Maximum possible speed of compressor, also of driver. Maximum horsepower possible for driver to develop, with any changes necessary to bring up to this maximum (such as changing nozzles, nozzle ring of steam turbine, changing blades or buckets). Paint specifications for exterior of unit. [Pg.479]

FIG. 17-60 Reverse-pulse fabric filter (a) filter cylinders (b) wire retainers (c) collars id.) tube sheet (e) venturi nozzle (/) nozzle or orifice (g) solenoid valve (h) timer (j) air manifold (k) collector bousing (l) inlet (m) hopper (n) air lock in) upper plenum. (Mikmpul Division, U.S. Filter Corp. )... [Pg.49]

The uniformity of the particles as measured by the standard deviation for a normal probability curve was found to be a function of flow rate, nozzle size (better for smaller nozzles), nozzle length (decrease in nozzle length decreases uniformity), etc. A decrease in interfacial tension is insufficient to cause change in uniformity. [Pg.348]

Always read and follow the operator s manuals for aU your spray equipment. They will tell you exactly how to use and care for it. After each use, rinse out the entire system. Check for leaks in lines valves, seals, and tank. Remove and clean nozzles. Nozzle, screens, and strainers. [Pg.343]

Nozzles Nozzle flow is quite different from pipe flow. In a properly designed nozzle, its cross-sectional area changes with lenj in such a way as to make the flow nearly frictionless. The hmit is reversible flow, for which the rate of entropy increase is zero. In this event dS/dx = 0, and Eqs. (4-160) and (4-161) become... [Pg.658]

Velocity and enthalpy relationships in a turbine nozzle nozzle efficiency... [Pg.152]

Nozzles. Nozzles are fabricated form the same sheet materials and inserted over an adhesive. For nozzles less than 76 mm, extruded inserts without the fabric backing are used. [Pg.281]

Selecting Nozzles. Nozzle sizes and impingement devices are related by the TEMA rule-of-thumb value of pV2 where p is the shell fluid density and V is the shell fluid velocity at the... [Pg.1247]

An air atomizing nozzle (nozzle diameter = 0.8 mm) was installed over a beaker containing the precipitation bath (pure water). Air pressure was set to 2.5 bar. The air flow at this pressure was 250 L/h. Polymeric solution (15 wt.% PSf, 10 wt.% vanillin, both solved in DMF) was prepared 24 h before microcapsules production and it was kept in a closed, amber bottle in order to avoid its contact with humid atmospheric air that could cause polymer precipitation and to prevent vanillin degradation by U.V. radiation. The polymeric solution microdroplets were projected onto the precipitation bath and immediately, microcapsules were formed. Finally, capsules were collected by filtration and kept into a desiccator. [Pg.354]

Two problems are often encountered with spray nozzles nozzle wear and nozzle blockages. [Pg.334]

Nozzle-to-nozzle spacing is so chosen that process operation will be satisfactory with the level at any location between the nozzles. Nozzles here refers to those used for connecting the level-measuring device to the vessel. [Pg.379]


See other pages where Nozzle nozzle is mentioned: [Pg.934]    [Pg.57]    [Pg.410]    [Pg.111]    [Pg.121]    [Pg.757]    [Pg.413]    [Pg.1090]    [Pg.41]    [Pg.1093]    [Pg.938]    [Pg.449]    [Pg.84]    [Pg.225]    [Pg.360]    [Pg.427]    [Pg.197]    [Pg.91]    [Pg.131]    [Pg.491]    [Pg.378]    [Pg.97]    [Pg.201]    [Pg.438]    [Pg.105]   
See also in sourсe #XX -- [ Pg.97 , Pg.101 , Pg.102 , Pg.106 , Pg.107 , Pg.120 , Pg.122 , Pg.148 , Pg.155 , Pg.161 , Pg.219 , Pg.231 , Pg.257 , Pg.288 ]




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Adiabatic Frictionless Nozzle Flow

Adiabatic Nozzle Expansion Spectroscopy

Adiabatic nozzle

Aerosols nozzle atomization

Agitation nozzles, jackets

Allowable nozzle loading

Atomiser nozzle

Atomization of spent acid nozzles

Atomizer nozzle

Atomizing nozzle performance

Atomizing nozzles

Atomizing nozzles, structure

Basic features nozzle

Beam sources nozzle

Bit nozzle

Blast nozzle

Bluebell Nozzle Application

Bottom-head nozzle arrangement

Burners nozzles

Calculation for choked nozzle flow

Centrifugal nozzle

Centrifugal pumps nozzle size

Centrifuges nozzle clarifiers

Centrifuges nozzle separator

Centrifuges nozzle solid-bowl

Choked nozzle

Clogging of the nozzles

Cluster nozzle

Combination nozzle for Electrolux cleaner

Comparison nozzles

Compressible flow convergent/divergent nozzles

Compressible flow through nozzles and constrictions

Compressible flows ideal nozzle

Compressors Nozzle Orientations

Control rod drive mechanism nozzles

Convergent nozzle

Convergent-divergent nozzle

Converging nozzle

Converging-diverging nozzle

Critical nozzles

De Laval nozzle

Delavan nozzle

Delivery nozzle

Delivery nozzle design

Dependence of the polytropic exponent on nozzle efficiency

Deposition nozzle

Directional feed nozzles

Disc stack centrifuge nozzle separator

Discharge nozzle

Distance between nozzles, influence

Divergent nozzle

Draw nozzle

Draw-off nozzle

Draw-off nozzle hydraulics

Drums nozzle locations

Dual-fluid nozzle

Economizer nozzles

Eddy pressure nozzles

Edge nozzles

Effect of Nozzle Configuration on PDE Performance

Effect of Nozzle Expansion

Effect of Pressure Drop and Nozzle Size

Elbow nozzles

Energy dissipation in a nozzle

Energy nozzle array

Exchange nozzles

Exchangers nozzle orientation

Expansion nozzle

Extension nozzle

Extrusion techniques Nozzles

Fan-jet nozzles

Fast Formation at Nozzles

Feed nozzles

Fill time nozzle

Flapper/nozzle system

Flow in nozzles

Flow rate jets, orifices, nozzles

Flow through Frictionless Nozzle

Flow through a converging nozzle

Flow through ideal nozzles

Flowmeters, differential pressure flow nozzles

Fluid isentropic nozzle flow

Foam nozzle

Fourier-transform microwave spectroscopy, pulsed-nozzle

Full nozzle

Full-cone spray nozzles

Funnel shaped nozzle as ejectors

Gas outlet nozzle velocity

Gas outlet nozzles

Gas-jet nozzles

HR nozzles

Heat exchanger nozzles

Heating nozzle

Heavy liquid outlet nozzle

High nozzles

High pressure nozzle

High-pressure Homogenization Nozzles

Hole nozzle arrays

Hollow cone nozzle

Hotrunner Nozzles

Hydraulic (Pressure) Nozzles

Hydraulic nozzles

Ideal nozzles

Impinging nozzle fields

Impinging single nozzle

Improved Performance and Life of Gasifier Nozzles

In a nozzle

Individual nozzles, heat transfer

Injection molding machine conventional nozzle

Injection molding machine nozzle

Injection molding nozzles

Injection nozzle

Inkjet nozzle applications

Inlet nozzle horizontal separator

Inlet nozzle mist eliminator

Inlet nozzle velocity

Internal mixing nozzles

Interpreting the experimental results for convergent-divergent nozzles

Jet nozzle

Jones Nozzle in Detonation

Large-diameter nozzle openings

Laskin-type nozzle generator

Laval nozzle

Light liquid outlet nozzle

Liquid distributor spray nozzle

Liquid nozzle diameter

Liquid-draw nozzles

MEMS-Nozzle

Main nozzle

Maintaining Nozzle Efficiency

Maximum allowable nozzle loads

Metal nozzle diameter

Mixing nozzle

Modeling of Gas Flows in Near-Nozzle Region

Modification to the nozzle

Modular units for moulds with HR nozzles

Mold-gate nozzle

Motive nozzle

Mould Nozzle

Multi-gating nozzle

Multi-hole nozzle

Multi-nozzle applicators

Multi-nozzles

Multiple nozzle feed injection

Near-nozzle region

Needle shut-off nozzles

Noise nozzle

Nozzle

Nozzle

Nozzle Atomization

Nozzle Drool

Nozzle Elevation and Orientation

Nozzle Locations

Nozzle Mounting

Nozzle Orientation

Nozzle abrasion resistance

Nozzle actuator

Nozzle adjustment

Nozzle amplifer

Nozzle angle

Nozzle arrangements, heat transfer

Nozzle arrays

Nozzle beam techniques

Nozzle block

Nozzle capillary

Nozzle cavitation

Nozzle central

Nozzle clogging

Nozzle cold runners

Nozzle control

Nozzle convergent part

Nozzle cracking

Nozzle cylindrical bodies

Nozzle damping

Nozzle design

Nozzle design influence

Nozzle diameter

Nozzle discharge centrifuge

Nozzle discharge coefficient

Nozzle discharge machine

Nozzle discharge velocity

Nozzle distance, relative

Nozzle divergent part

Nozzle drying principle

Nozzle during expansion

Nozzle efficiency

Nozzle efficiency limitations

Nozzle ejector

Nozzle exit

Nozzle exit area

Nozzle exit loss

Nozzle exit loss example

Nozzle expansion process

Nozzle expansion ratio

Nozzle external restrictions

Nozzle fields

Nozzle flow coefficient

Nozzle flow model

Nozzle flow with finite-rate chemistry

Nozzle fluid flow, pressure drop

Nozzle geometry

Nozzle geometry parameters

Nozzle guide vane rows

Nozzle heat transfer

Nozzle hole channels

Nozzle hole shapes

Nozzle hydraulic needle

Nozzle icing

Nozzle impact)

Nozzle inlet

Nozzle installation

Nozzle jet expansion

Nozzle leakage

Nozzle limitations

Nozzle loop

Nozzle losses

Nozzle maintenance

Nozzle mass flow

Nozzle mixers

Nozzle needle

Nozzle needle sealing

Nozzle optimization

Nozzle orifice diameter

Nozzle penetrations

Nozzle perforated plates

Nozzle plate

Nozzle pneumatic

Nozzle port size

Nozzle position

Nozzle pressure control

Nozzle pressure drop

Nozzle pressure recovery

Nozzle process (

Nozzle propellant

Nozzle ratio

Nozzle reactors

Nozzle reinforcement

Nozzle ring

Nozzle separator

Nozzle sizing

Nozzle source, supersonic

Nozzle specific energy consumption

Nozzle staggered arrangement

Nozzle suction

Nozzle system

Nozzle testing

Nozzle throat

Nozzle throat area

Nozzle vacuum

Nozzle velocity

Nozzle velocity maximum

Nozzle, angled

Nozzle, common types

Nozzle, flow

Nozzle, pressure-atomizing

Nozzle, rocketry

Nozzle-based

Nozzle-based function

Nozzle-based techniques

Nozzle-choking

Nozzle-collector distance

Nozzle-skimmer dissociation

Nozzle-skimmer system

Nozzle-surface distance, influence

Nozzles and Venturi

Nozzles and diffusers

Nozzles and spargers

Nozzles classification

Nozzles coil heater

Nozzles conical-cylindrical

Nozzles converging/diverging, flow

Nozzles deflector

Nozzles drops

Nozzles flow measurement

Nozzles flow rate adjustment

Nozzles fluid dynamics

Nozzles hydropneumatic

Nozzles injection molds

Nozzles listing locations

Nozzles output

Nozzles position, influence

Nozzles pressure drop, heat exchanger

Nozzles pressure vessels

Nozzles quench

Nozzles selection

Nozzles standard

Nozzles surfactants

Nozzles thermodynamics

Nozzles through

Nozzles twin-fluid

Nozzles types

Nozzles variable cone

Nozzles, Inlets and Outlets

Nozzles, characteristics

Nozzles, inspection

Nozzles, jacketed vessels

Nozzles, pneumatic spray

Nozzles, spray drying

Nozzles, swirl-spray pressure

Nozzles, weights

Off Nozzle Elevation

Open nozzles

Opposed-nozzle

Orifices and Nozzles

Outlet nozzles

Outlet velocity and mass flow in a convergent-only nozzle

Over/Under/Perfectly Expanded Nozzle Flow

Overexpanding nozzle

Oxygen injection nozzle

Packing spray nozzle distributor

Perforated nozzle arrays

Pintled nozzle

Port Shrouding or Nozzle Sizing

Powder application nozzles

Powder nozzle

Pressure converging/diverging nozzles

Pressure drop through nozzles

Pressure nozzle

Pressure nozzle atomizers

Print heads nozzles

Printer nozzle

Procedure 2-12 Nozzle Reinforcement

Procedure 3-9 Through Nozzles

Processing, thermoplastics nozzle

Pulsating nozzle

Pulsed nozzle

Push nozzle

Reactor vessels nozzle cracking

Recovery of kinetic energy at the entry to a fixed blade (nozzle)

Rinse nozzles

Rocket nozzle

Safety relief valve open nozzle

Seeded supersonic nozzle source

Semi nozzle

Separation equipment nozzle separator

Separation nozzle

Separation nozzle process

Separation nozzle process equipment

Separation nozzle process pressures

Separation nozzle process principle

Separation nozzle process separative capacity

Shell and header nozzles

Shell nozzles

Shell-side nozzle pressure drop

Shrouded blending nozzle

Shut-off nozzle leaves vestige

Shut-off nozzles

Silicon nitride blast nozzle

Single Fixed Nozzle

Single Nozzle, Spindle Operated

Single fluid nozzle

Single nozzle head

Single nozzles

Single-fluid pressurized nozzles

Sintered nozzles

Slit-shaped nozzle

Slot nozzles

Slow Formation at Nozzles

Sonic nozzle

Splash plate nozzle

Spout nozzle velocity

Spray dryer nozzles used

Spray head with separate nozzles for water and release agent

Spray nozzle particle size

Spray nozzle patterns

Spray nozzles

Spray nozzles droplet size from

Spray nozzles flow rate

Spray nozzles for

Spraying nozzle

Steady-state flow in a nozzle

Steady-state flow through a nozzle with constant specific volume

Steam nozzle

Steam nozzle, turbine

Suction and discharge nozzles

Sulfur nozzles

Supercritical high-pressure nozzle extraction

Supersonic Micro-nozzles

Supersonic Nozzle (Anderson, Andres, Fenn)

Supersonic nozzle

Supersonic nozzle flow

Swirl nozzles

Tangential inlet nozzle

Tangential nozzles

Tank truck nozzles

Temperature nozzle

The continuous sonic nozzle procedure

The convergent-divergent nozzle

The inlet nozzle

The nozzle

Thermocompressors Fixed nozzle

Three-stream nozzle

Tip nozzles

Torpedo nozzle

Total entropy change of an air flow in a nozzle

Tundish nozzles

Turbine nozzles

Tuyere = nozzle

Two-fluid nozzles

Ultrasonic nozzles

Underexpanding nozzle

Uranium nozzle separation process

Valve gate nozzle

Vapor flow nozzle exit loss

Vapor return nozzle

Variable nozzles

Venturi Tubes and Nozzles

Venturi flow nozzles

Venturi nozzle

Vessel nozzles

Welding rocket nozzles

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