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Ultrasonic Gas Flow Meter

The BU-7010 Ultrasonic Gas Flow Meter is built for industrial facilities that need accurate, low-maintenance gas measurement. It measures natural gas, biogas, LPG, propane, compressed air, and other industrial gases with consistent reliability across diverse applications. The meter uses the transit time ultrasonic principle to measure gas velocity with no moving parts and no obstruction inside the pipe. This eliminates pressure loss across the meter and reduces long term maintenance costs significantly compared to mechanical alternatives. It is available in single path, dual path, and multi path configurations depending on pipe diameter and required accuracy. The meter fits standard pipelines from DN50 to DN200 using ANSI B16.5 flanged connections for straightforward drop-in installation. Built-in temperature and pressure compensation allows the flow meter to output corrected volumetric flow in normalized and standard units, as well as mass flow in kilograms per hour without a separate flow computer. This simplifies the installation and reduces overall system cost. The enclosure is rated IP-66 for outdoor and wet area use, with a flame-proof certified option available for Zone 1 and Zone 2 hazardous locations including gas compression stations and LPG terminals. For control system integration, the meter supports RS485 Modbus RTU communication and a standard 4 to 20 milliamp analogue output, connecting directly to SCADA, DCS, BMS, and energy management platforms. Across biogas plants, natural gas networks, and LPG facilities, the BU-7010 delivers measurement accuracy within 1.5 percent of reading and the long-term stability that demanding gas metering applications require.

ultrasonic-gas-flow-meter

BU-7010

Ultrasonic Gas Flow Meter

  • Biogas, Natural gas, LPG Gas, Propane, Compressed air, Flare, etc
  • Sensor : Ceramic
  • Size: DN 50 to DN 200
  • Flange: ANSI B16.5, 150# / 300#
  • 4-20mA & RS 485 Modbus RTU
  • Power Supply: 24 VDC / 230 VAC
  • Temp: 0 ... +80°C
  • Inbuilt Temp and Pressure Compensation
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Working Principle of Ultrasonic flow meter

Ultrasonic gas flow meters operate on the transit time principle, where ultrasonic sound waves are transmitted both upstream and downstream through the gas. The difference in transit times between the upstream and downstream signals is directly proportional to the velocity of the gas.

Flow Rate Calculation: The velocity of the gas is multiplied by the cross-sectional area of the pipe to calculate the volumetric flow rate.

Temperature and Pressure Compensation: The meter measures real-time gas conditions, enabling accurate calculations of gas density and compressibility factors. Compensation algorithms, often based on standards like AGA8, adjust the volumetric flow to provide precise mass flow measurements, accounting for variations in gas composition and operating conditions.

Single-Path Model: Single-path models use one ultrasonic path and are suitable for applications that require basic flow measurement accuracy.

Dual-Path Model: Dual-path models enhance accuracy by averaging measurements from two independent paths, reducing the impact of flow profile disturbances.

Multi-Path Model: Multi-path models utilize multiple ultrasonic paths to capture detailed flow dynamics, delivering the highest accuracy for large-diameter pipes or critical industrial processes.

Inbuilt Electronic Volume Corrector (EVC): The inbuilt EVC processes data from the ultrasonic measurements and the temperature and pressure sensors. It converts the actual flow volume to standard conditions, ensuring precise billing and reporting in compliance with industry standards.

Efficient and Reliable Design: The design of the ultrasonic gas flow meter ensures no obstruction to the gas flow, resulting in zero pressure drop. Its minimal maintenance requirements make it an efficient and reliable solution for industrial gas applications.

Working principle of Ultrasonic gas flow meter

Precision-engineered flow meters for accurate measurement across all industries. Trusted solutions for liquid, gas, and steam flow monitoring.

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