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Gas Absorption Column, Armfield Limited, Bridge House, England

LABORATORY FOR PROCESS ENGINEERING The absorption unit consists of a column of height 1.4 m, diameter 80 mm and divided into two sections. The column is filled with Raschig rings of 15 mm in diameter. The electrical pressure sensor measures the pressure drop along the column. The liquid transport pump allows flow in the range […]

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Extraction unit liquid – liquid (UOP5MkII), Heat Exchanger, Armfield Limited, Bridge House, England

LABORATORY FOR PROCESS ENGINEERING Liquid – liquid extraction unit consists of a column of height 1.6 m, diameter 50 mm and made of glass. The column is filled with Raschig rings with a diameter of 15 mm. The aqueous phase through the system circulates from a 25-liter power supply and return tank. The liquid is

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HEAT EXCHANGER, ARMFIELD LIMITED, BRIDGE HOUSE, ENGLAND

LABORATORY FOR PROCESS ENGINEERING The heat exchanger, is the heat transfer analysis section, consists of several subunits: HT-33-Shell & Tube Heat Exchanger, HT-34-Jacked Vessel with Coil & Stirrer, HT-35-Cross Flow Heat Exchange, HT-36-Tubular Heat Exchanger, HT-37-PLATE HEAT EXCHANGER. The system is equipped with educational software for monitoring and managing the operation of all heat exchangers.

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Cavitation Demonstration F1-28, Armfield Limited, Bridge House, England

LABORATORY FOR PROCESS ENGINEERING The apparatus consists of a circular Venturi tube, three Burdon pressure gauge, which measures the static pressure, the control valve on the apparatus.The apparatus is used to demonstrate the phenomenon of cavitation, which is due to sudden changes in fluid flow velocity and pressure in the tube water. Due to the

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Flow Meter Demonstration F1-21, Armfield Limited, Bridge House, England

LABORATORY FOR PROCESS ENGINEERING The apparatus consists of three types of flow meters (gauges with a damp plate, Venturi tubes and rotameters). It is supplied with water from the hydraulic bench, on which the valve is adjusted and flow. The apparatus is used to compare flow values obtained using different types of gauges. Contact: email:

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Osborne Reynolds Demonstrations F1-20, Armfield Limited, Bridge House, England

LABORATORY FOR PROCESS ENGINEERING The apparatus consists of a tank that is connected to a test tube of 700 mm long. The apparatus is connected to a hydraulic bench by means of which the reservoir is supplied with water, and the discharge of the tank is carried out by the outlet valve on the apparatus.

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The apparatus for determining losses in the pipes (F1-18), Energy Losses in Pipes F1-18, Armfield Limited, Bridge House, England

LABORATORY FOR PROCESS ENGINEERING This apparatus consists of a test tube positioned vertically next to the device through which water can flow directly from the hydraulic bench or from the reservoir equipped with the appliance. Water sources allow high and low flow rates of water that can be controlled by the valve at the outlet

The apparatus for determining losses in the pipes (F1-18), Energy Losses in Pipes F1-18, Armfield Limited, Bridge House, England Read More »

Nozzle Detector Demonstrator and Nozzle Profile Demonstrator (F1-17), Orrifice and Free Jet Flow (F1-17), Armfield Limited, Bridge House, England

LABORATORY FOR PROCESS ENGINEERING The F1-17 apparatus consists of a reservoir supplied with water from a hydraulic bench. The tank has a specially profiled opening that allows adjusting the nozzle. On the right side of the reservoir there is a panel with markers on which the millimeter paper is adjusted, by which the distances of

Nozzle Detector Demonstrator and Nozzle Profile Demonstrator (F1-17), Orrifice and Free Jet Flow (F1-17), Armfield Limited, Bridge House, England Read More »

Bernoulli’s Theorem Demonstration F1-15, Armfield Limited, Bridge House,England

LABORATORY FOR PROCESS ENGINEERING The test section of this device consists of a classic Venturi tube made of pure acrylic. The piezometers located above the Venturi tubes are connected by silicon tubes with individual points on the tube and serve to determine static pressure. The total pressure in the system is determined by the probe

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