Ultrasonic Flowmeter FL106
The Ultrasonic Flowmeter FL106 is an advanced device in the category of flow measurement instruments. Utilizing ultrasonic wave technology, it enables users to measure fluid flow rates with high accuracy and efficiency. This wall-mounted flowmeter is a non-invasive solution that performs measurements without interrupting the fluid flow or coming into direct contact with it.
Structure and Operation
The FL106 ultrasonic flowmeter operates based on the Transit Time method. In this approach, ultrasonic waves are transmitted from a transducer through the pipe, and after passing through the fluid, they return to the receiver. The time difference between transmission and reception is directly related to the velocity of the fluid.
Since the pipe diameter remains constant, this time difference is used as a function of fluid velocity or flow rate. By calculating this time difference, the flow rate inside the pipe can be measured with high precision.
Applications
Due to its non-contact measurement and easy installation, the FL106 ultrasonic flowmeter is widely used in various industries, including:
- Oil and Gas Industry – Measuring the flow of crude oil and related liquids.
- Chemical Industry – Monitoring process fluids without direct contact.
- Water and Wastewater Systems – Measuring water and wastewater flow without interrupting the system.
- Food and Pharmaceutical Industries – Controlling the flow of sensitive and corrosive liquids in production lines.
- Power Plants – Monitoring the flow of cooling fluids and other process liquids.
Advantages of the Ultrasonic Flowmeter FL106
-
No need to stop the flow or contact the fluid
- One of the biggest advantages of the FL106 ultrasonic flowmeter is its ability to measure flow without stopping the fluid or direct contact, preventing contamination and property changes.
-
High measurement accuracy
- The transit time technology ensures precise flow measurement, even under variable temperature and pressure conditions.
-
Compatible with various fluids
- The FL106 can be used for a wide range of fluids, including corrosive and sensitive liquids.
-
Easy installation and minimal maintenance
- As a wall-mounted device, it does not require modifications to the piping system, reducing installation time and costs.
-
Durability in harsh environments
- Its robust and resistant structure makes it ideal for use in challenging industrial environments.
Key Features of the Ultrasonic Flowmeter FL106
-
Transit Time Technology
- Utilizes this advanced technology for accurate time difference measurement, ensuring high precision.
-
Wall-Mounted Design
- Enables quick and easy installation in various industrial settings.
-
Non-Invasive Measurement
- Operates without direct contact with the fluid, preventing issues such as contamination or corrosion.
-
Compatible with Various Liquids
- Suitable for measuring the flow of water, oil, chemicals, and corrosive liquids.
-
Long Service Life and Low Maintenance Cost
- High-quality materials ensure durability and reduce the need for frequent repairs.
Why Choose the Ultrasonic Flowmeter FL106?
✔ Non-Invasive Measurement – No need to stop the flow or contact the fluid, making it a safe and hygienic option for various industries.
✔ High Accuracy and Efficiency – Transit time technology ensures precise measurement.
✔ Easy Installation – The wall-mounted and lightweight design simplifies the installation process.
✔ Versatile Applications – Suitable for a wide range of liquids and industrial applications.
✔ High Durability – A strong and robust structure provides long-lasting performance.
Conclusion
The Ultrasonic Flowmeter FL106 is a highly efficient and reliable instrument for fluid flow measurement across various industries. With its non-invasive measurement technology, high precision, durability, and easy installation, it stands out as one of the best choices for monitoring liquid flow in pipelines. If you are looking for an accurate, cost-effective, and efficient flow measurement solution, the FL106 ultrasonic flowmeter is an excellent option.