Online Pitot Tube Gas Flow Meter

Online Pitot Tube Gas Flow Meter

Online Pitot Tube Gas Flow Meter

VPT511NF Online Pitot Tube Gas Flow (Velocity ) monitor adopts pitot tube differential pressure method to measure flue gas velocity, and can measure flue gas pressure and temperature are measured directly

VPT511NF Online Pitot Tube Gas Flow (Velocity ) monitor adopts pitot tube differential pressure method to measure flue gas velocity, and can measure flue gas pressure and temperature are measured directly, which greatly improves the accuracy and accuracy of me assurement, and reduces the cost of use .And maintenance workload, especially suitable for on-line real-time measurement of flue gas parameters. The output signal is 4-20 mA. It conforms to the national environmental protection industry standards. The length of the designed probe is 1.6 meters and it can be determined according to the customer’s order requirements.

Applications

  • cement
  • thermal power
  • iron and steel
  • metallurgy
  • refinery
  • aluminum
  • petrochemical
  • papermaking,
  • glass industry
 
Flow rate range  0-40m/s
Accuracy  ≤10m/2, error ≤12%,>10m/s, error ≤10%
Resolutions 0.1m/s
Response time  ≤ 20S
output  4-20mA
Pressure Range  (-2500~+2500)Pa
Accuracy  ≤+/-1%
Response time  ≤10S
output  4-20mA
Temperature Range 0-300 
Accuracy  +/-3 ℃
Response time  ≤10S
output 4-20mA 
Working Temp (-20~+50) ℃
Power Supply  220VAC
Dimension  210W*255H*1950Lmm
Flange DN65
Weight 20KGS

VPT511NF Online Pitot Tube Gas Flow (Velocity ) monitor adopts pitot tube differential pressure method to measure flue gas velocity, and can measure flue gas pressure and temperature are measured directly, which greatly improves the accuracy and accuracy of me assurement, and reduces the cost of use .And maintenance workload, especially suitable for on-line real-time measurement of flue gas parameters. The output signal is 4-20 mA. It conforms to the national environmental protection industry standards. The length of the designed probe is 1.6 meters and it can be determined according to the customer’s order requirements.

Applications

  • cement
  • thermal power
  • iron and steel
  • metallurgy
  • refinery
  • aluminum
  • petrochemical
  • papermaking,
  • glass industry

 

Flow rate range  0-40m/s
Accuracy  ≤10m/2, error ≤12%,>10m/s, error ≤10%
Resolutions 0.1m/s
Response time  ≤ 20S
output  4-20mA
Pressure Range  (-2500~+2500)Pa
Accuracy  ≤+/-1%
Response time  ≤10S
output  4-20mA
Temperature Range 0-300 
Accuracy  +/-3 ℃
Response time  ≤10S
output 4-20mA 
Working Temp (-20~+50) ℃
Power Supply  220VAC
Dimension  210W*255H*1950Lmm
Flange DN65
Weight 20KGS

Measuring carbon dioxide (CO2) is important for understanding the role it plays in the environment and its effect on climate change. CO2 is a major component of Earth’s atmosphere, and it traps heat like a blanket, causing global temperatures to rise. Too m uch CO2 can lead to drastic changes in our weather patterns and ecosystems, so monitoring its levels is essential for predicting future climate conditions. Additionally, measuring CO2 can help us better understand our impact on the environment and make informed decisions about how to reduce emissions and slow down down down down down global warming. By analyzing CO2 data over time, we can develop strategies to mitigate the effects of climate change and ensure a sustainable future.

Before industrialization, the global average annual atmospheric carbon dioxide concentration was 278ppm (1ppm is one part per million). In 2012, the global annual average atmospheric carbon dioxide concentration was 393.1ppm. By April 2014 , the monthly average carbon dioxide concentration in the northern hemisphere atmosphere exceeded 400ppm for the first time. . 2. Global climate warming, the continuous aggravation of the atmospheric greenhouse effect leads to global climate warming, resulting in a series of global climate problems that cannot be predicted by today’s science. According to the International Climate Change Economics Report, if human beings maintain the current way of life, by 2100, there will be a 50% chance that the global average temperature will rise by 4°C.

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