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Mass flow meter main application area - focus on microfluidic control technology

Main application areas of mass flow meters:
Food industry: mass flow meters can be used in dairy products, alcohol, beverages, syrup, chocolate, edible oil, etc.;
Petrochemical: mass flow meters can be used for olefins, light olefins (including gasoline and diesel), aromatic hydrocarbons and liquefied petroleum gas;
Fine Chemicals: Mass flow meters can be used in raw materials and products in salt chemical, resin chemical, chemical additives and other industries;
Pharmaceutical industry: mass flow meters can be used in the production of raw materials and finished products for pharmaceutical products;
Storage and operation industry: Mass flowmeter can be used for storage, loading and loading of various chemical raw materials and oil products;
The mass flow meter can also be used as a high precision online density meter to measure the real-time density and temperature of the fluid. At the same time, other parameters such as volume flow, medium content, concentration, etc. can be calculated. The mass flow meter directly measures the mass flow rate of the medium passing through the flow meter, and also measures the density of the medium and indirectly measures the temperature of the medium. Since the transmitter is a smart meter with the single chip as the core, more than ten parameters can be derived for the user according to the above three basic quantities. The mass flow meter is flexible, powerful, and cost-effective. It is a new generation flow meter.
The mass flow meter is a flow measuring instrument that measures the mass flow in the pipe. Under the condition that the measured fluid is in a large change of parameters such as pressure and temperature, if only the volume flow rate is measured, a large measurement error will be caused by the change of the fluid density. In volumetric and differential pressure flow meters, the density of the fluid being measured may vary by 30%, which can cause 30 to 40% error in flow. As the level of automation increases, many production processes place new demands on flow measurement. The chemical reaction process is controlled by the quality of the feedstock, not the volume. The heating and cooling effects of the vapor and air streams are also proportional to the mass flow. Strict control of product quality, accurate costing, and fuel quantity control for aircraft and missiles also require accurate mass flow measurements. Therefore, the mass flow meter is an important flow measuring instrument.

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