Averaging Pitot Tube Flowmeter

Engineered for Stable DP Measurement in Large Pipelines

We design our velocity tube Verabar flow meter to capture a clean, profile-averaged velocity signal using an optimized pitot-based sensing structure. The aerodynamic bullet-shaped probe conforms to fluid-dynamic principles, generating a stable differential pressure output with high signal strength, excellent reliability, and resistance to leakage or blockage. This design supports accurate measurement of gases, liquids, steam, and corrosive fluids across a broad range of pipe sizes and demanding operating conditions, including elevated temperature and pressure.
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CE, SIL-3 & ATEX Certifications

36-Month Factory Warranty

24/7 lifetime technical support

Trusted by 5,128 Industrial Users

Factory-calibrated to ISO/IEC standards

Precision Level Measurement Within Reach

Explore Our Averaging Pitot Tube Flowmeter

Designed for large-diameter pipelines and plant utilities, this velocity-averaging pitot tube delivers accurate, profile-averaged flow measurement with a simple, low-intrusion design. It maintains signal stability under varying operating conditions, making it ideal for compressed air networks, gas distribution systems, and steam applications.

split type Averaging Pitot Tube Flowmeter

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Insertion Type Averaging Pitot Tube Flowmeter

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integrated type Averaging Pitot Tube Flowmeter

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Key Specifications Sheet

Parameter Specification
Applicable Media: Air, gas, steam, and clean liquids
Insertion Length Options: 200, 400, 600, 1000, 1500, 2000 mm (custom lengths available)
Measurable Velocity Range: 0–30 m/s to 0–80 m/s (selectable), turndown ratio 1:10
Accuracy: ≤ ±1% FS
Output Signal: 4–20 mA differential-pressure proportional output (two-wire system)
Power Supply (Transmitter): 24 VDC (ripple < 2%)
Solenoid Valve Power: 220 VAC (for back-blowing function)
Operating Temperature: −40°C to +80°C (instrument body)
Medium Temperature: −40°C to +121°C
Humidity: ≤100% RH (non-condensing)
Installation Requirements: 3D–5D upstream straight pipe section recommended
Calibration Frequency: Every 12 months
System Configuration Options: Speed measurement; speed + backflush; speed + static pressure + backflush; speed + static pressure + temperature + backflush

Main performance features

Design features that deliver measurable performance in real industrial environments.

Stable Differential Pressure Output

The streamlined sensor head produces a clean, profile-averaged DP signal that improves flow calculation stability across varying operating conditions.

High Accuracy Across Flow Ranges

Velocity-averaging design reduces sensitivity to turbulence, delivering consistent measurement accuracy for gas, liquid, steam, and mixed-condition service.

Strong Anti-Clogging Performance

The bullet-shaped head resists debris accumulation and blockage, maintaining long-term signal reliability even in demanding industrial pipelines.

Minimal Pressure Loss Design

The low-intrusion probe geometry keeps pressure drop exceptionally small, reducing energy cost impact and supporting efficient system operation.

Reliable Operation in Harsh Conditions

Material strength and structural stability support continuous measurement under high temperature, high pressure, and corrosive media environments.

Broad Application and Pipe Size Flexibility

The insert-type design adapts to a wide range of diameters and utilities, enabling practical installation in large pipelines and existing plant infrastructure.

Precision Development for Demanding Processes

Advanced Design Grounded in Applied Fluid Mechanics

We structure the R&D process for our Verabar meter around achieving reliable, high-quality flow measurement in complex industrial systems. By combining aerodynamic probe design with rigorous stress and performance analysis, we ensure the meter produces a strong and stable DP signal. This R&D discipline allows the instrument to operate effectively in large pipelines, variable-flow environments, and conditions where dependable monitoring is essential.
  • Refined Aerodynamic Profile Engineering

    The bullet-shaped sensor is refined to improve flow interaction, reduce flow separation, and maintain stable velocity averaging.

  • High-Strength Differential Pressure Stability

    DP signal behavior is validated under shifting operating conditions to confirm consistent output and reduced susceptibility to flow disturbances.

  • Material Engineering for Harsh Conditions

    Probe materials and structural components are selected and tested to withstand high temperatures, corrosive media, and long-term industrial exposure

  • Application-Specific Design Validation

    The meter is tested against air, gas, steam, and clean liquid media to confirm compatibility and consistent performance across industries.

Precision Fabrication Supporting Measurement Confidence

High-Reliability Manufacturing for Demanding Applications

Our production process ensures that the bullet-shaped sensor head, sensing ports, and internal passages are fabricated to exact tolerances, enabling accurate profile-averaged velocity capture. Each probe undergoes multi-stage inspection, pressure verification, and calibration checks to ensure consistent signal strength and long-term reliability across varying operating conditions.

Verified Performance, Certified Quality

Certified to the World’s Most Demanding Industrial Standards

Our flowmeters undergo comprehensive verification under recognized global standards. With SIL-3 safety, CE conformity, and explosion-proof certification, each unit delivers dependable performance and lasting operational integrity in demanding process conditions.

  • Precision Flow Measurement Starts Here

    Discuss Your Application With Our Flow Specialists

    If you have specific media, pipeline, or performance requirements, Connect with our flow-measurement specialists to discuss your applications, we'll help you choose the right flow-metering solution.
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