Meter APPF in Gas Pipeline Metering

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Introduction

In the gas metering skid of pipeline, gas compensation equations is used to execute the correction for compressibility and super compressibility and to get compensated flow at normal, standard or reference pressure and temperature. Yokogawa provides controller embedded flow calculation library based on AGA (American Gas Association) reports.

Meter APPF in Gas Pipeline Metering

Meter APPF in Gas Pipeline Metering

Expected Benefits

  • Eliminates cost for flow computer
  • A quick response to I/O and fast calculation result
  • Storing daily data on non-volatile flash memory for 35 days
  • Easy integration with SCADA or Local display

Process Description

Flow equations are based on the standards following: AGA Report No. 3: Orifice metering of natural gas and other related hydrocarbon fluids (Also ISO 5167) AGA Report No. 7: Turbine metering of natural gas is required. This portfolio uses the pulse train from turbine meter and some parameters as inputs in order to perform the calculation of natural gas flow. AGA Report No. 8: Compressibility factors of natural gas and other related hydrocarbon gases

Application Solutions

STARDOM

STARDOM

Yokogawa offers the flow calculation for metering solution as an APPF (Application Portfolio) on the STARDOM autonomous controller, FCN/FCJ. Combining the IEC 61131-3 language with powerful 32-bit processor, Yokogawa will provide flow computer with quick response to I/O and fast calculation result. Furthermore, due to high memory capacity of FCN/FCJ, Meter APPF will store 35 days daily average data (Pressure, Differential Pressure, Temperature, Flow and 2 user defined variables), and the history of the last 70 parameter changes. The Meter APPF calculates the flow accuracy in real time, considering the uncertainty of all measures involved. Data setting regarding Natural Gas composition can be made manually or automatically by online chromatograph connection (MODBUS, OPC, etc). The interface for manual data composition inputs is provided as part of Meter APPF this interface also provides historian and parameters data visualization.

Meter APPF provides:

  • AGA3 flow calculations where the orifice plate (Flange taps or Pipe taps) metering of natural gas is required. This portfolio uses pressure, differential pressure, temperature and some parameters as inputs in order to perform the calculation of natural gas flow.
  • AGA7 flow calculations where turbine metering of natural gas is required. This portfolio uses the pulse train from turbine meter and some parameters as inputs in order to perform the calculation of natural gas flow.
  • AGA8 super-compressibility. This portfolio uses pressure, natural gas composition and temperature as inputs in order to perform the calculation of compressibility gas factor.
  • AGACOM makes all interfaces of AGA blocks with physical inputs, making unit conversion and making data consistency.
  • AGAHIST prepares data for recording to flash memory. It will store 35 days daily average data (Pressure, Differential Pressure, Temperature, Flow and 2 user defined variables), and the history of the last 70 parameter changes.

Conclusion

AGA solution from YOKOGAWA enables new Gas & Oil application that is cost effective, reliable and good performer.

行业

  • 上游

     上游行业包含海上和陆上活动,包括井口自动化、分馏、完井和分离,回收和制备地下或水下原油和天然气

    当石油被带到地表时,在运输之前必须将其分离。在三相分离中,一级和二级分离阶段通常分布有气体流量、水流量和油流量。气体的输送需要管道,并且在输送之前的上游阶段需要进行分馏。液体需要通过罐和管道输送并处理,这就需要精确的液位测量

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  • 近海 (FPSO FLNG & FSRU)

    近海的勘探和生产需要在恶劣的条件下最大限度地保障正常运行时间。载人和无人驾驶设施需要可靠的综合控制和安全系统(ICSS),并且需要具有先进的远程监控能力。横河电机拥有先进技术和丰富经验,可以执行各种规模及自动化程度复杂的离岸项目。

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相关产品&解决方案

  • FCJ All-in-one PLC/RTU

    The brick type model FCJ autonomous controller fulfills the basic requirements of the utility control. It also provides the reliability for the SCADA communication with network redundant capability.

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