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Use of the 80G sensor for the calculation of fluid level with stirring and...

VEGAPULS 64 is a fluid level measuring radar sensor. VEGA is the world's largest radar-level sensor maker. VEGAPULS 64 has outstanding results for 80GHz radar level gage.

VEGAPULS 64-80GHz alternative FMCW level radar applications
https://www.drurylandetheatre.com/alternative-vegapuls-64-fmcw-level-radar

Application area: VEGAPULS 64: The compact process fittings for small tanks or narrow spaces are particular advantages. The excellent signal targeting enables usage of ships with several internal installations. The VEGAPULS 64 is a sensor for measuring continuous fluids. The small process fittings give unique advantages for small tanks or in tight spaces. The rather strong signal concentrating allows the usage of vessels with many facilities including eg stirrers and heating spirals.

FMCW Level Radar Applications sequence LM78
It is ideal to meet a broad spectrum, heavy dust, steam condensation, mixing, narrow installation room and high accuracy and blind zone criteria occasions. Applicable conditions: mid silo, store, hopper, storage tank, process tank, mixing tank.

A chemical plant's micro-powder department has a number of tanks with a diameter of 25 meters. There is a heater and stirrer inside, and high steam is present while feeding. As seen in the figure below, heavy steam could be seen as the workers opened the observation cover. Before the scene, a directed wave radar level gage is chosen. However, directed wave radar is easily disturbed, and the measuring impact is not strong, by factors such as corrosivity of the measuring medium and viscosity. Later, the consumer selected the 80G radar level meter, and below is the historical pattern diagram. The liquid level of the four 80G radar level gauges deployed on site can be well determined across many loading and unloading operations.

Why do we pick an 80G mm radar scale for measuring liquid level under heavy steam and agitation conditions? Can the 26G radar level measurement?

Briefly explain. The radar stage 80G has a high frequency of propagation, is well penetrated and does not suffer from steam. With a launch angle of 3°, interruption of the stirring blade can be easily avoided; The special echo detection algorithm prevents many echos from being read in the case of elevated content levels. However, in the high-speed setting, the 26G radar gage does not penetrate the steam, or the echo is greatly diminished after the radar wave hits the medium interface, and the calculation is unstable; Furthermore, the starting angle of the 26G Radar Level Gage is usually over 20°, so that a stirring blade can quickly disrupt the radar wave triggering false alarms; And if the content level is high, there is no inner steam and the spectrum is broad, the echo is very loud, and numerous echos are simple to interpret. The 80G radar level gage may therefore be chosen to achieve a reasonable measuring result for measuring fluid level in high vapor and stirring environments.

  • May 17 2021 at 03:41
     

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