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Installation and usage instructions for split rotor steam flowmeter
Date: 2022-03-05Read: 23

Installation and usage instructions for split rotor steam flowmeter

  Split rotor steam flowmeterIt is mainly used to measure the flow rate of saturated steam and slightly superheated steam (superheat not exceeding 20) ℃ in industrial production processes. It can directly display the cumulative amount of actual steam quality on site, and can also achieve remote cumulative display. When the steam pressure in the pipeline changes, accurate measurement can be ensured by simply adjusting the pressure device. Its measurement range is wide, high accuracy, long service life, simple structure, reliable operation, and convenient operation advantages are suitable for energy measurement.
Split rotor steam flowmeter is an instrument for measuring the cumulative mass flow of steam, with two structural types: mechanical and intelligent; The mass of all steam flowing through the meter can be read on site through the indicator dial (mechanical) or LCD display screen (intelligent), and pulse signals can also be output. It also has manual pressure compensation or automatic temperature compensation functions. Due to its simple structure, moderate price, and wide measurement range, the splitter rotor steam flowmeter is widely used in industries such as petroleum, chemical, textile, and heating that require steam flow measurement.
The split rotor steam flowmeter is mainly composed of three components: throttling fluid, damper, and indicator. It is a differential pressure split principle instrument. After the measured medium steam enters the throttling fluid of the flowmeter, a part of it passes through the main pipeline orifice plate, and a part flows through the splitter pipe through the nozzle and jets onto the impeller, forming torque on the impeller and driving the rotor shaft to rotate. Damping blades are installed at the lower part of the rotor shaft and installed in the damping chamber filled with damping fluid, which restricts the rotation of the impeller. Therefore, its speed is much slower than that of steam injection. Therefore, the blade can effectively absorb the function of steam injection speed, so that its rotation speed corresponds to the torque and damping torque caused by steam injection, and forms a certain quantitative relationship. The impeller speed is directly proportional to the flow rate.
The split rotor steam flow meter adopts a high-temperature resistant sensor, which is directly driven by the impeller and does not require gear reduction. It can compensate for temperature and pressure density, and the LCD display can also be remotely transmitted to secondary instruments.Split rotor steam flowmeterIt is a mass flow meter that measures the flow rate of saturated steam or slightly superheated steam flowing through pipelines. It can display the cumulative or instantaneous value of steam mass flow rate on-site or remotely, and is divided into mechanical and intelligent types. The flowmeter is equipped with L, 2, and 3 throttle orifice plates, which can be replaced to change the flow range. The splitter rotor steam flowmeter has a wide measurement range, high temperature, long service life, and easy operation and maintenance. It is widely used for steam flow measurement in industrial sectors such as petroleum, chemical, and light industry.
Installation and use of splitter rotor steam flowmeter:
Split rotor steam flow meter is a mass flow meter used to measure saturated and low superheated steam flowing through pipelines. It is a field direct reading cumulative type, especially suitable for steam measurement in small and medium-sized enterprises, and can provide reliable basis for boiler energy conservation. Its structure, working principle, and characteristics are as follows: the splitter rotor steam flowmeter is mainly composed of three major components: throttling fluid, damper, and indicator. It is a differential pressure splitter principle instrument. After the measured medium steam enters the throttling fluid of the flowmeter, a part passes through the throttling orifice plate of the main pipeline, and another part flows through the nozzle through the splitter pipe, jetting onto the impeller, forming torque on the impeller, causing the impeller to drive the rotor shaft to rotate. Damping blades are installed at the lower part of the rotor shaft and installed in the damping chamber filled with damping fluid, which restricts the rotation of the impeller. Therefore, its speed is much slower than that of steam,Split rotor steam flowmeterThe impeller can effectively absorb the kinetic energy of steam injection, so that its rotational speed corresponds to the torque and damping force caused by steam injection, and forms a certain quantitative relationship. The impeller speed is proportional to the flow rate.