Averaging Pitot Tube with DP Transmitter
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This complete assembly comprises a D.P. Transmitter for 4-20mA analog output & an averaging pitot tube assembly as a primary flow sensing elements. A most reliable & economical instrument for low measurement of Gas, Liquid & Steam application: Specification * Choice of linear or square root output. * A/D or D/A converter not required as the electronic unit can be directly hooked up with the control system. * Piezo resistive sensor for temperature & pressure compensation. * Programmable engineering units for display
Averaging Pitot Tube
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We are the leading manufacturer, exporter and supplier of Averaging Pitot Tube (Annubar). P.S Instruments Averaging pitot tubes use multiple sensing ports to continually average the flow profile and generate a differential pressure that represents the mean flow rate across the pipeline. Averaging Pitot Tubes offer an accurate measurement and low permanent pressure loss The Pitot tube produces a Differential pressure (DP) signal proportional to the square of the flow rate in accordance with Bernoulli's theorem. This signal has two components, the high pressure (HP) and the low pressure (LP). DP= HP-LP When the fluid impacts the sensor, it creates a high pressure zone, greater than pipe static pressure, in front of the sensor. As the fluid moves past the sensor, it accelerates and a low pressure zone is created to the sides and rear of the senor. Multiple sensing ports are positioned in the high and low pressure zones and an averaged differential pressure is produced. The DP increases proportionally to the square of the velocity of the fluid. By averaging the flow velocity across the pipe, averaging pitot tubes are more tolerant of errors bends and valves upstream of the meter
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Averaging Pitot Tube
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The pitot tube produces a Differential pressure (DP) signal proportional to the square of the flow rate in accordance with Bernoulli's theorem. This signal has two components, the high pressure (HP) and the low pressure (LP).When the fluid impacts the sensor, it creates a high pressure zone, greater than pipe static pressure, in front of the sensor. As the fluid moves past the sensor, it accelerates and a low pressure zone is created to the sides and rear of the senor. Multiple sensing ports are positioned in the high and low pressure zones and an averaged differential pressure is produced. The DP increases proportionally to the square of the velocity of the fluid.
Averaging Pitot Tube
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Averaging Pitot Tube, Water Meter, Integral Orifice Flange
precision rods
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