They vary greatly in purchase price but can often be very inexpensive to use and certainly to maintain, again due to the fact they do not use moving parts, unlike mechanical flow meters.These flow meters require little maintenance, as the sensors will not contact with the flow, as they have no moving parts, it means no obstruction and no general wear and tear.They are non-invasive, and therefore can detect in-situ flow rates from outside the pipework, with no interruption to flow or the process.What are the Advantages of an Ultrasonic Flow Meter? Ultrasonic clamp on flow meters readings are altered by acoustic properties of fluids and impacted by density, viscosity, temperature and suspended particulates, all dependent on the type of flow meter. The two flow meter types, Transit Time (Time of Flight) and Doppler, are both available in a clamp-on meter style with transducers which are used to detect and then measure flow rates from the outside of the pipework, without any interruption to flow or process. Their non-intrusive design, high accuracy, and ability to handle a wide range of fluids make them suitable for a variety of applications, including industrial processes, chemical metering, and fluid handling. Read our summaries below for further advantages, however to summarize, ultrasonic flowmeters are a versatile and accurate solution for measuring the flow rate of liquids and gases. They can also be used for flow measurement in pipes with different diameters and shapes, and can handle a wide range of flow rates. Additionally, ultrasonic flowmeters can handle a wide range of fluids, including corrosive and abrasive fluids, which makes them suitable for use in harsh industrial environments.įurther advantages of ultrasonic flowmeters is their high accuracy and stability, which makes them suitable for use in critical applications such as metering of chemicals, fuel, and gases. This makes them ideal for use in applications where it is not possible or desirable to insert a probe into the fluid, such as in food and pharmaceutical processing. One of the key benefits of ultrasonic flowmeters is their non-intrusive design, as they do not require any physical contact with the fluid. The time taken for the waves to travel from the sender to the receiver is then used to calculate the flow rate of the fluid. The sender sends out high frequency sound waves into the fluid, and the receiver detects the waves after they have travelled through the fluid. Ultrasonic flowmeters consist of two transducers, one acting as a sender and the other as a receiver. The flow rate of the fluid is then calculated based on the known distance between the transducers and the measured time delay. It operates on the principle of measuring the time taken for ultrasonic waves to travel through the fluid from one transducer to another. An ultrasonic flowmeter is a device used for measuring the flow rate of liquids and gases with ultrasound technology.
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