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Detailed Introduction to Application of Ultrasonic Flow Meters in Water Treatment Industry
1. Applicable Industry Scenarios Widely used in municipal water supply, secondary water supply, sewage treatment plants, reclaimed water reuse, water purification plants, industrial park water treatment, swimming pool water circulation, landscape water management, wastewater discharge control and...Read more -
Electromagnetic Flow Meter: Horizontal vs Vertical Installation
Which is better & Installation Rules 1. Conclusion Vertical installation is preferred; horizontal installation is acceptable but must follow strict installation rules. 2. Vertical Installation (Recommended) Advantages Avoid air bubble accumulation, sediment deposition and sludge settling. Al...Read more -
Electromagnetic Flow Meter Electrode Material Selection
Difference & Application: 316L / Hastelloy / Titanium / Tantalum 1. 316L Stainless Steel FeaturesGeneral-purpose & cost-effective; moderate corrosion resistance; poor resistance to high chloride, strong acid and oxidizing media; ordinary wear resistance. Suitable MediaClean water, tap wat...Read more -
Electromagnetic Flow Meter: Maximum Temperature & Pressure Ratings
The maximum temperature and pressure of an electromagnetic flow meter (EMF) are primarily limited by the liner material, electrode seals, coil insulation class, and flange rating. Below is a structured breakdown of standard and extreme limits. 1. Maximum Temperature Ratings (by Liner Material) Ru...Read more -
For electromagnetic flow meters, what working conditions are respectively suitable for rubber lin...
1. Rubber (Natural/Neoprene/CR) Best for: General‑purpose, low‑to‑moderate corrosion, aqueous media, and slurry with mild abrasion. Temperature: Typically ‑10 °C to +80 °C (short excursions to 90 °C). Corrosion: Resists fresh water, wastewater, seawater, sewage, weak acids/bases (pH 4–10), and oi...Read more -
Why Electromagnetic Flowmeters Cannot Be Installed at the Highest Point or Downward Slope of the ...
Electromagnetic flowmeters (EMF) work based on Faraday’s Law of Electromagnetic Induction, which requires that the measured conductive liquid must fully fill the pipeline and flow stably through the sensor’s magnetic field. Only in this way can the electrodes accurately detect the ind...Read more -
Guided Wave Radar Level Transmitter
Adopts time-domain reflectometry (TDR) principle, stable and reliable measurement. Not affected by temperature, pressure, steam, foam, vapor and dust. No influence by medium density, conductivity and viscosity changes. Suitable for corrosive, sticky, granular and powdery media. Small beam angle,...Read more -
Applications of Hydrostatic Level Transmitter
Water treatment: Water plant, sewage tank, regulating tank, fire water tank, clear water tank and wastewater well. Chemical industry: Acid & alkali storage tank, solvent tank, reactor and underground storage tank. Petrochemical: Crude oil tank, diesel tank, lube oil tank and sedimentation ta...Read more -
Main Features of Hydrostatic Level Transmitter
Simple structure, high reliability and long service life. Easy installation and no complex debugging required. Not affected by liquid turbidity, foam, bubbles or suspended solids. Stable measurement for water, sewage, oil, acid and alkaline media. Wide measuring range, suitable for deep pool, ta...Read more -
Hydrostatic Level Meter Introduction
The hydrostatic level meter works based on the hydrostatic pressure principle of liquid. It calculates the liquid level height by measuring the static pressure generated by the liquid column, following the formula P=ρgh. It is mainly divided into submersible type, single flange type and double fl...Read more -
Differences Between Ultrasonic Level Meter and Static Pressure Level Meter
1. Working Principle Ultrasonic Level Meter Adopts non-contact measurement. The sensor emits ultrasonic pulses, which reflect back when they hit the liquid surface. The controller calculates the liquid level height by measuring the travel time of the sound waves (based on the speed of sound in ai...Read more -
What are the limitations of clamp-on ultrasonic flow meter?
Clamp-on ultrasonic flow meters have clear application limitations as follows: Strict requirements for liquid medium They only work well with clean, single-phase, low-viscosity liquids. Not suitable for high-viscosity media, oil-water mixture, liquids with excessive air bubbles, suspended solids,...Read more