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Portable Ultrasonic Flowmeters
Showing all 4 results
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Sale!
8812 Ultrasonic Pipe Thickness Gauge
A very useful tool used to determine the internal diameter of pipework on existing installations, an essential parameter for accurate clamp-on flow measurement.
- With wall sound speed feature.
- Quick and easy setup.
- 11 Types of Materials.
- Battery powered.
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Sale!
Portaflow 333 Portable Clamp-on Flow & Heat Meter
Portable range of clamp-on flow and energy meters from Micronics, for simple, accurate flow and energy measurement from outside the pipe.
Our portable flow and energy meter solutions are ultrasonic, clamp on and non-invasive, for closed pipe applications. This means no interruption to process and no downtime whilst the portable flow and energy meters are installed. The Portaflow range brings simplicity to the non-invasive measurement of liquid flow and hydronic energy. Portaflow offers the user quick and accurate flow and energy measurement. And with its easy to follow menu and simple set up results can be achieved within minutes of opening the case.
Application/use: HVAC and energy system audits, Check system meters, Pump verification, Boiler testing, Leak detection, Filter sizing, Ultrapure water measurement, Heavy fuel oil metering, Condensate measurement, Balancing systems, Clean in place evaluation, Fire system testing, Hydraulic system testing.
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Sale!
Portaflow D550 Doppler Flowmeter
Portable ultrasonic doppler flow meter measurement solutions, clamp on and non-invasive, for closed pipe applications. Uses the doppler ultrasonic flow meter principle for no interruption to process or downtime whilst the instrument is being used.
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Sale!
UX5000 ATEX Clamp-on Flow Meter
A flow meter is a device that measures the rate of liquid flow, providing essential data for monitoring and controlling various processes such as industrial manufacturing, water treatment, HVAC systems, and oil refining, where accurate measurement of fluid flow is crucial for efficiency and quality control.
The UX5000 uses a cross correlation transit time algorithm to provide accurate flow measurements. An ultrasonic beam of a given frequency is generated and applied to the transducer crystals. This transmission goes first from the downstream transducer to the upstream transducer as shown in the upper half. The transmission is then made in the reverse direction, being sent from the upstream transducer to the downstream transducer. The speed at which the ultrasound is transmitted through the liquid is increased slightly by the velocity of the liquid through the pipe. The subsequent time difference T1-T2 is directly proportional to the liquid flow velocity.