FlarePhase 350 - Fluenta
FlarePhase 350
Part of Fluenta's advanced range of ultrasonic transducers, the FlarePhase 350 is designed and optimized to measure flow in the most challenging of applications containing extreme temperature environments.
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Handling the Heat - FlarePhase 350
Ultrasonic flow measurement at extremely high temperatures.
As with the other offerings in the FlarePhase range, the FlarePhase 350 features the novel “Active Phase Analysis Technology” and continuous measurement optimization, making it a next-generation ultrasonic transducer.
Flares may reach extremely high temperatures at which most ultrasonic sensors malfunction, thus making it impossible to take flow measurements. Fluenta’s solution to this problem is the FlarePhase 350. Equipped with a new piezo-electric sensor made from advanced ceramics and extra heat shielding, it can continue measuring at extreme temperatures while maintaining accuracy.
Packaged with the FlareAmp and FlareAmp controller, it boasts accuracies as high as ±0.75%, making it a truly next-generation ultrasonic measurement solution for extremely high-temperature applications.
Applications
Extreme Temperature Environments
Fluenta’s FlarePhase 350 is designed to operate in extreme temperature environments, ranging from -40°C to +350°C. This broad temperature range makes it ideal for various industrial applications where process conditions exceed 250°C, particularly in industries that rely on extreme thermal processes.
FlarePhase with High Levels of Carbon Dioxide
Fluenta’s FlarePhase technology is engineered to handle the demanding conditions of flare gas measurement in high carbon dioxide (CO2) environments.
Features and Highlights
- Active Phase Analysis Technology
- Configurations
- Extremely High Temperatures
The “Active Phase Analysis Technology” combats the issue of phase shifts, which is an inherent problem faced by ultrasonic measurement devices and results in inaccuracies. By determining the phase shifts and calculating the necessary compensation, the FlarePhase range provides laboratory levels of accuracy in the field.
The FlarePhase 350 can be installed in either a single path or a dual path configuration. The dual path can be configured to provide heightened security in terms of redundancy, ensuring data continuity, or to achieve heightened accuracy, with dual path accuracy as high as ±0.75%.
The FlarePhase 350 measures gas flows at temperatures as high as +350°C (662°F) for extended periods of time.
Key Specifications
Measurement Parameters
- Standard and actual volume flow
- Mass flow
- Totalized standard volume flow
- Totalized mass flow
- Molecular weight
- Standard density
- Actual density
- Pressure
- Temperature
- Speed of sound
- Gas velocity
Certifications
- ATEX: ExVeritas 20ATEX0699 X
- IECEx: EVX 20.0044X
Operating Temperature
-40 to 662 °F (-40 to 350 °C)
Operating Pressure
11.6 – 145 psiA (0.8 to 10 barA)
Flow Velocity Range
0.1 – 394 ft/s (0.03 – 120 m/s)
Accuracy
- Standard: ± 2.5% to 5%
- Optional: ± 0.75% to 2%
Repeatability
Better than 1% of volume flow for specific velocities.
Turn Down Ratio
Downloads and Support
- Certifications
- Product Sheet
- Additional Services
FlarePhase Transducers EU Declaration of Conformity
FlarePhase Transducers - All Variants - ATEX Certificate
FlarePhase Transducers - All Variants - IECEx Certificate [EXV 20.0044X]
FlarePhase and FlarePhase Bias-90 INMETRO Examination certificate [CPEx 21.0030 X]
FlarePhase All Variants NRTL Examination Certificate [E115411]