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Insertion Thermal Mass Flowmeter for Combustion Air - Air and Climate
Combustion air is the air that is used to actually burn the fuel. Without combustion air, which is normally forced into the furnace, combustion is impossible. The efficient operation of today’s power plant hinges largely upon accurate and repeatable measurement and control of various air inputs to the boiler such as Primary coal mills, Secondary air, Overfire air, individual burners and flue-gas re-circulations air.
Many large industries such as Power, Steel, Cement, Fertilizers, Petrochemicals, Textiles etc need captive power plant for steam & electrical power requirement as utility to reduce their input costs. Conventional combustion air flow measurement such as DP Type (Aerfoil, Orifice, Annubar or Pitot tube) are un-reliable, non-repeatable, frequent clogging, high maintenance prone & expensive with conventional method DP Type (Aerfoil, Orifice, Annubar or Pitot tube).
LEOMI’s developed a proven insertion thermal mass flow technologies provide solutions to combustion air measurement with superior reliability, repeatable, virtually no maintenance, auto-cleanable & cost effective solution.
LEOMI has designed thermal mass flow meters that provides integrated solutions for combustion air optimization.
WHY TO CHOOSE LEOMI TO MEASURE COMBUSTION AIR:
- Direct Mass flow measurement independent of pressure and temperature
- No pressure drop against high pressure drop in DP type (Aerofoil, Orifice)
- Highest turndown ratio of 100:1 against DP type meters of 4:1
- Easy installation & No maintenance
- Cost effective solutions to carry out large calibrations
- Customized flow sensor solutions
- Simple design to operate easily
- Wide range flow measurement accepted
- Accurate measurement for optimizing combustion control
- Improves overall boiler efficiency & lowers SOx, NOx emissions
- Useful information on optimizing mass balance
- Simple design to operate helps in energy conservation easily
- In-house calibration traceable to DAkkS Germany as per ISO-17025
