Wireless Turbine Flow Meter

The wireless turbine flowmeter is an intelligent flow measurement instrument operating on the principle of turbine rotation speed. Its core working principle is as follows: when fluid flows through the sensor, it impacts the turbine blades, causing them to rotate. The turbine’s rotational speed is directly proportional to the fluid’s flow velocity. By detecting the turbine’s rotational speed, the instantaneous flow rate and cumulative flow of the fluid can be calculated.
Unlike traditional turbine flow meters, this product integrates wireless communication modules (such as RS485 interfaces supporting GPRS transmission or other wireless protocols like LoRa) and is typically battery-powered. This enables the remote transmission of measured flow data to monitoring centers or cloud platforms, achieving true wireless, remote monitoring. This design makes it particularly suitable for scenarios where wiring is difficult, locations are dispersed, or mobile monitoring is required.

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Description

Product Advantages and Features
The wireless turbine flowmeter integrates the inherent measurement advantages of turbine flowmeters with the convenience of wireless technology, delivering significant value to users.
1. Wireless and Installation Advantages
🔹 Revolutionary Zero Wiring: Utilizing wireless communication technology eliminates the wiring constraints of traditional wired instruments, reducing cable and conduit costs by up to 90%. This makes it particularly suitable for monitoring in areas with difficult wiring or for mobile equipment.
🔹Long-Range Communication: Wireless technology delivers exceptional transmission distances, enabling data transfer to remote monitoring centers via compatible networks. This facilitates integration with energy management systems or IoT platforms for remote monitoring and data analysis.
🔹Ultra-Low Power & Battery Operation: Low-power technology combined with battery power enables continuous operation for 3 to 6 years or longer without frequent battery replacement, achieving true wireless autonomy.
2. Performance and Measurement Advantages
🔹High Accuracy and Exceptional Repeatability: Delivers extremely high measurement precision, with liquid mass flow accuracy up to ±0.2%R and short-term repeatability of 0.05%–0.2%. This makes it highly reliable for trade settlement and precision process control.
🔹Wide Turndown Ratio: Features a broad turndown ratio, reaching up to 1:20 for medium to large diameters, accommodating diverse operating conditions from startup to full load.
🔹Compact Design with Flexible Installation: The internal turbine serves as the moving component, enabling a compact and lightweight structure for easy installation and maintenance. Available in insertion-type configurations for large-diameter applications with minimal pressure loss.
🔹 Robust Data Retention: All valid data (including instrument coefficients and cumulative flow values) remains intact for up to 10 years after power loss.

Application Areas
Wireless turbine flow meters excel in the following fields due to their broad media adaptability and wireless transmission advantages:
🔹 Petroleum and Chemical Industry Flow measurement of crude oil, refined oil products, and various organic/inorganic liquids.
🔹 Natural Gas and Municipal Gas Trade settlement and process monitoring for natural gas, liquefied gas, and other gases (gas turbine flow meters only).
🔹 Food & Pharmaceuticals Some turbine flowmeters are also used in high-hygiene applications like water, beverages, and low-viscosity food ingredients.
🔹 Agricultural Irrigation Measurement and remote monitoring of irrigation water usage to support water-saving agriculture.
🔹 Industrial Process Control Process flow measurement for various liquids in petroleum, chemical, light industry, food, and other sectors.

Selection and Application Tips
When selecting and using wireless turbine flowmeters, several key points require special attention:
🔹 Pay attention to medium characteristics: Clearly identify the medium’s corrosiveness, viscosity, and presence of impurities. Turbine flowmeters have specific requirements for medium cleanliness; liquids containing solid particles can wear down the turbine, affecting accuracy and service life.
🔹 Verify Process Conditions: Accurately understand the pressure and temperature ranges within the process pipeline to ensure the selected instrument meets requirements.
🔹 Consider Installation Requirements: While turbine flow meters have specific straight pipe run requirements upstream and downstream, ensure the sensor is installed correctly.
🔹Wireless communication requirements: Clearly define specific field requirements for wireless transmission methods (e.g., GPRS, LoRa), data update frequency, and transmission distance. Confirm whether on-site network coverage meets the communication module’s needs.
🔹Power supply selection: Choose battery-powered or externally powered options based on site conditions. If battery-powered, evaluate battery endurance based on data acquisition frequency.

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